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1

Liubymenko, O. M., and O. A. Shtepa. "Restoration of palladium membranes after contact with hydrogen for hydrogen-oxygen fuel cells." Journal of electrical and power engineering 31, no. 2 (2024): 76–81. http://dx.doi.org/10.31474/2074-2630-2024-2-76-81.

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Annotation. Studying the deformations of palladium membranes under the influence of hydrogen, which is a relevant issue for hydrogen energy and the nuclear industry. The mechanisms of palladium membrane shape change due to hydrogen penetration and the formation of temporary gradient alloys such as α-PdHn are consid-ered. Experiments were conducted using a hydrogen-vacuum installation, where the processes of membrane satu-ration and degassing were studied at temperatures from 100°C to 360°C and hydrogen pressures from 0.01 MPa to 2.5 MPa. It was established that the change in the shape of the m
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2

Mammadova, S. R. "EXTRACTION OF PALLADIUM." Azerbaijan Chemical Journal, no. 3 (September 28, 2021): 67–71. http://dx.doi.org/10.32737/0005-2531-2021-3-67-71.

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It is known that a series of organic compounds containing in molecule SH-, NH- qroups, including halogens, carboxylic acids and their derivatives, have the ability to form the innercomplex compounds under certain conditions. These compounds permit to carry out the extraction in acidic medium, that prevents the of process hydrolysis. They are not dissolved in water but are soluble in various solvents and form colored solutions and so may be used as an extractants. The main purpose of this paper is the study of palladium extraction ability for chlorinated naphthenic acids (CNA) synthesited in la
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3

Drobný, Tomáš. "Obrazy ve středověkých sbírkách relikvií v zemích Koruny české." Museologica Brunensia, no. 1 (2024): 29–43. http://dx.doi.org/10.5817/mub2024-1-3.

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V lucemburské době se v zemích Koruny české setkáváme se vznikem kultu deskových obrazů. Vytváření sbírek relikvií sloužilo politické reprezentaci Karla IV., jejich součástí se staly kultovní obrazy. Přenesení centra Svaté říše římské do Prahy vyžadovalo vytvoření nových strategií panovnické reprezentace. Propojení mariánského kultu Lucemburky s prezentací ikon a jejich devočních kopií a podpora umělecké produkce učinila z Prahy a českých zemí centrum produkce nových typů náboženských soch a obrazů. Vyjadřovaly témata, která přinesla česká reformace. Přinesené ikony a kopie ikon a madony krásn
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4

Ravi and D. Haritha. "Efficient Computation of Min & Max Iceberg Queries Using Value based Property." Journal of Engineering Science and Technology Review 12, no. 6 (2019): 202–7. http://dx.doi.org/10.25103/jestr.126.25.

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5

Doi, T., and K. Yamamoto. "Palladium(O)-Catalyzed Cyclization of 2,7-0ctadienyl Acetates and Analogst." Current Organic Chemistry 1, no. 3 (1997): 219–34. http://dx.doi.org/10.2174/1385272801666220124191458.

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<p>The palladium(O)-catalyzed cyclization of 2,7-octadienyl acetates and analogs proceeds in acetic acid solvent and generally consists of an intramolecular insertion of an alkene counterpart into a 7t-allylpalladium(ll) unit to give a 2-vinylcyclopentylmethylpalladium as the key intermediate. The process is referred to as a 'pallada-ene' reaction after Oppolzer. Depending on the structure of the substrate, the key intermediate undergoes -hydride elimination, carbonylation and/or further intramolecular Heck reaction. In the last two cases, the stereochemical outcome of
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6

Skucha, Mateusz. "Woman’s Knight. Intellectual Biography of One Feminist." Autobiografia 6 (2016): 177–89. http://dx.doi.org/10.18276/au.2016.1.6-12.

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7

K., SARASWATHI, V. S. LAICSHMI A., and V. R.AMANA V. "Selective Extraction and Spectrophotometric Determination of Palladium(II) with Sodium Pentamethylene Dithiocarbamate." Journal of Indian Chemical Society Vol. 69, Nov 1992 (1992): 795–96. https://doi.org/10.5281/zenodo.6044633.

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Department of Chemistry, S. V. University, Tirupati-517 502 <em>Manuscript received 11 February 1991,&nbsp; revised 23 July 1992, accepted 12 August 1992</em> Selective Extraction and Spectrophotometric Determination of Palladium(II) with Sodium Pentamethylene Dithiocarbamate
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8

K., K. ROY, and K. MISHRA L. "Complexes of Rhodium(II) and Palladium(II) with N-Vinylimidazole." Journal of Indian Chemical Society Vol. 64, Aug 1987 (1987): 503–5. https://doi.org/10.5281/zenodo.6200990.

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Department of Chemistry, Patna University, Patna-800 005 <em>Manuscript received 5 December 1986, revised 11 May 1987,&nbsp;</em><em>accepted 10 July 1987</em> Complexes of Rhodium(II) and Palladium(II) with N-Vinylimidazole.
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9

S., P. GHOSH, K. PRASAD R., and K. MISHRA L. "Diacido Complexes of Palladium(II) with Morpboline." Journal of Indian Chemical Society Vol. 64, Sep 1987 (1987): 574–75. https://doi.org/10.5281/zenodo.6217428.

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Department of Chemistry, Science College, Patna University, Patna-800 005 <em>Manuscript received 19 September&nbsp;1986, revised 10 July 1987,&nbsp;accepted 17 August 1987</em> Diacido Complexes of Palladium(II) with Morpboline. &nbsp;
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10

M., M. PATEL, M. PATEL D. та R. PATEL M. "Palladium(II) Complexes of some α-Oximinobeuzoylacetarylamide Semicarbazones and Thiosemicarbazone". Journal of Indian Chemical Society Vol. 64, Jun 1987 (1987): 360–61. https://doi.org/10.5281/zenodo.6222123.

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Department of Chemistry, Sardar Patel University, Vallabh Vidyanagar-383 120 <em>Manuscript received 28 June 1984, revised 30 April 1987,&nbsp;</em><em>accepted 19 May 1987</em> Palladium(II) Complexes of some &alpha;-Oximinobeuzoylacetarylamide Semicarbazones and Thiosemicarbazone.
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11

RAKA, JAIN, and K. GUPTA R. "Chemical Investigation of Alysicarpus bupleurifolius DC." Journal of Indian Chemical Society Vol. 63, May 1996 (1986): 531–32. https://doi.org/10.5281/zenodo.6275999.

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Indian Grassland and Fodder Research Institute, Jhansi-284 001 <em>Manuscript received 31 October 1985, accepted 23 April 1986</em> Chemical Investigation of<em> Alysicarpus bupleurifolius </em>DC.&nbsp; &nbsp; &nbsp;
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12

K., B. SARAN, C. ROY B., and LAHIRI S. "3-(p-Acetophenyl)-1-phenyltriazene-N-oxide. A New Reagent for Gravimetric Determination of Nickei(II) and Palladium(ll) and their Separation from Binary Mixture." Journal of Indian Chemical Society Vol. 63, May 1996 (1986): 532–33. https://doi.org/10.5281/zenodo.6276034.

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Department of Chemistry, Jadavpur University, Calcutta-700 032 <em>Manuscript received 11 May 1982, revised 25 February 1986, accepted 31 March 1986</em> 3-(<em>p</em>-Acetophenyl)-1-phenyltriazene-<em>N</em>-oxide. A New Reagent for Gravimetric Determination of Nickei(II) and Palladium(ll) and their Separation from Binary Mixture.
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13

V., V. BALAKRISHNA, and APPALA RAJU N. "Gravimetric Determination of Palladium(Il), Copper(II) and Nickel(Il), and Palladium(Il), Copper(Il) and Manganese(II) from Ternary Mixtures, using 2-Hydroxy- I -acetonaphthoneoxime and I-Hydroxy-2-acetonaphthoneoxime." Journal of Indian Chemical Society Vol. 63, May 1986 (1986): 512–14. https://doi.org/10.5281/zenodo.6296740.

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Depaitment of Chemistry, Sri Venkateswara University Post-Graduate Centre, Kurnool-518 001 Department of Chemistry, Sri Venkateswara University, Tirupati-517 502 <em>Manuscript received 30 July 1985, revised 24 February 1986, accepted 23 April 1986</em> 2-Hydroxy-1-acetonaphthoneoxime and its isomer 1-hydroxy-2-acetonaphthone&shy;oxime have been used as reagents for the gravimetric determination of palladium(II), copper(II) and nickel(II) as well as palladium(II), copper(II) and manganese(II) from ternary mixtures. The results obtained are fairly accurate.
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14

PREMLATA, KHANDUAL, and R. SAHA C. "Dihydrogen Reduction of Nitroaromatics in Presence of Nickel(II), Palladium(II), and Platinum(II) Acetylacetonates in Homogeneous Phase." Journal of Indian Chemical Society Vol. 63, Oct 1986 (1986): 901–6. https://doi.org/10.5281/zenodo.6302464.

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Department of Chemistry, Indian Institute of Technology, Kharagpur-721 302 Manuscript <em>received 6 January 2986, revised 1 May 1986, accepted 22 August 1986</em> Dihydrogen reductions of nitroaromatics have been studied in presence of [M(acac)<sub>2</sub>l<sub>n</sub>, where, acac=acetylacetonate anion ; M=Ni, n=3 ; M = <em>Pd, </em>Pt, n=I, under normal pressure conditions. Palladium(II) complex was more active than its platinum(II) analogue while nickel(II) complex was inactive. An intermediate deep<em> </em>green compound of composition [Pd(acac) (acacH)H(C<sub>6</sub>H<sub>5</sub>NO<sub>
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15

A., K. SINGH, ROY BANI, and P. SINGH R. "Bidentate Pyrimidine-2-thiols as Spectrophotometric Reagents for Palladium and Osmium-Determination in Alloys, Minerals and Catalysts." Journal of Indian Chemical Society Vol. 62, Apr 1985 (1985): 316–18. https://doi.org/10.5281/zenodo.6324802.

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Department of Chemistry, University of Delhi, Delhi-110 007 <em>Manuscript received 23 July 1984, accepted 29 April 1985</em> 1-Pyridyl and 1-(4&#39;-phenylthiazolyI)-4,4,6-trimethyl-1<em>H</em>,4<em>H</em>-pyrimidine-2-thiol (abbre&shy;viated as PyTPT and PhTPT, respectively) have been synthesised and studied for the photometric determination of palladium and osmium The reagents are highly selective as other transition and platinum group metals do not interfere. Optimum conditions for both these determinations have been established. The methods have been employed for the determination of pall
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16

Sudibya, Akhmad, and Indah Widyaningsih. "Dew Formation and Anaerobiosis in Anaerobic Jars." Asian Journal of Medicine and Health 21, no. 10 (2023): 348–57. http://dx.doi.org/10.9734/ajmah/2023/v21i10912.

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Introduction: This study aimed to prove whether the palladium catalyst affects the dew formation time in the anaerobic cover and whether anaerobiosis can be achieved without a palladium catalyst.&#x0D; Materials and Methods: This research is a laboratory experimental study with a non-randomized control group design. In this study, replication was carried out. The amount of replication used is 10. The palladium catalyst was used in 10 experiments, whereas it was not used in ten other experiments.&#x0D; Results: The growths of Pseudomonas aeruginosa, Clostridium tetani, and Bacteroides fragilis
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17

Nechaev, Yurii S. "Characteristics of hydride-like segregates of hydrogen at dislocations in palladium." Uspekhi Fizicheskih Nauk 171, no. 11 (2001): 1251. http://dx.doi.org/10.3367/ufnr.0171.200111e.1251.

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18

Shi Zuoyan, 史作盐, 黄信 Huang Xin, 王芳 Wang Fang, 虞应 Yu Ying та 刘绍鼎 Liu Shaoding. "钯纳米颗粒超晶格薄膜光学特性". Laser & Optoelectronics Progress 62, № 1 (2025): 0131001. https://doi.org/10.3788/lop240791.

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19

Ning, Yuantao, Zhengfen Yang, and Huaizhi Zhao. "Platinum Recovery by Palladium Alloy Catchment Gauzes in Nitric Acid Plants." Platinum Metals Review 40, no. 2 (1996): 80–87. http://dx.doi.org/10.1595/003214096x4028087.

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Since the introduction of palladium-gold catchment gauzes for the recovery of the platinum lost from the catalyst gauzes used in the manufacture of nitric acid, the mechanism by which these high palladium content alloys catch and recover the platinum has been of interest to both researchers and manufacturers, alike. Using analyses of the surface chemical species which form on palladium, both in flowing oxygen and during the ammonia oxidation reaction, this paper describes how the surface of the palladium, at temperatures above 800°C, is a multilayer structure with the bright palladium metal su
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20

Kitiwan, Mettaya, and Duangduen Atong. "Characteristic of Palladium Coated Tubular Alumina Composite Membrane for Hydrogen Separation." Key Engineering Materials 434-435 (March 2010): 510–13. http://dx.doi.org/10.4028/www.scientific.net/kem.434-435.510.

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The palladium membrane has been developed for high temperature separation of hydrogen from other syngas molecules. In this study, tubular α-alumina substrate was used as a support for increase mechanical strength for thin palladium membrane. Prior depositing of palladium film, a dip-coating of palladium nuclei was performed to cover the substrate. Afterward, surface of activated support was modified with a thin intermediate layer for improving adhesion between support and Pd membrane. Electroless plating of dense palladium membrane was achieved from the plating bath containing EDTA stabilized
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21

Wahlberg, J. E., and A. S. Boman. "Cross-reactivity to palladium and nickel studied in the guinea pig." Acta Dermato-Venereologica 72, no. 2 (1992): 95–97. http://dx.doi.org/10.2340/00015555729597.

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In recent years there have been several reports on concomitant patch test reactions to palladium and nickel, which belong to the same group in the periodic table. Exposure to palladium mainly takes place via dental alloys and jewelry. However, the clinical relevance of simultaneous reactivity to these metals is unknown. To elucidate the question of cross-reactivity, guinea pigs were induced with palladium or nickel and simultaneously challenged with palladium and nickel. Animals sensitized to palladium according to the guinea pig maximization test method (GPMT) or to a new method by van Hoogst
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22

Chitra, P. "PATHOGENICITY AND MORTALITY BIOASSAY OF SPODOPTERA LITURA FABRICIUS (LEPIDOPTERA: NOCTUIDAE) INFECTED WITH FOUR STEINERNEMA SP. ISOLATED FROM DIFFERENT AGRO-ECOSYSTEM." International Journal of Zoology and Applied Biosciences 2, `1 (2017): 14–20. https://doi.org/10.5281/zenodo.1311096.

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The four Steinernema sp. isolated from Palladam, Erode, karur and Madathukulam areas were tested for its pathogenicity against 4th instar larvae of Spodoptera litura with 100 IJs/ 20 larvae under laboratory conditions. The mortality was observed after 24 hrs of infection with 87%, 88%, 86% and 83% respectively in Palladam, Erode, karur and Madathukulam. In the larval mortality study 0.5 ml inoculam with 1, 5, 10, 15, 20, 25, 30, 35, 40, 45 and 50 IJʾs per twenty larvae of treatment of T1, T2, T3, T4, T5, T6, T7, T8, T9, T10 and T11 respectively for each Steinernema sp. isolated from Palladam,
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23

Sun, Haimin, Xinlei Chen, Xin Xu, and Sai-juan Chen. "Palladin Plays an Important Role in Pulmonary Cellular Infiltration in Differentiation Syndrome." Blood 124, no. 21 (2014): 4947. http://dx.doi.org/10.1182/blood.v124.21.4947.4947.

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Abstract Background Acute promyelocytic leukemia (APL) is characterized by a specific t(15;17) chromosomal translocation, which fuses the promyelocytic leukemia (PML) gene on chromosome 15 to the retinoic acid receptor-(RARα ) gene on chromosome 17. The introduction of all-trans retinoic acid (ATRA) into the treatment strategy of APL fundamentally changed the management and outcome of this disease. Treatment with ATRA relieves this blockage, resulting in terminal differentiation of the APL blasts. Aims To investigate the molecular mechanisms of ATRA induced differentiation, we have described a
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24

Umegaki, Tetsuo, Yusuke Yamada, Atsushi Ueda, Nobuhiro Kuriyama, and Qiang Xu. "Hydrogen Production via Steam Reforming of Ethyl Alcohol over Palladium/Indium Oxide Catalyst." Research Letters in Physical Chemistry 2009 (July 28, 2009): 1–4. http://dx.doi.org/10.1155/2009/631815.

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We report the synergetic effect between palladium and indium oxide on hydrogen production in the steam reforming reaction of ethyl alcohol. The palladium/indium oxide catalyst shows higher hydrogen production rate than indium oxide and palladium. Palladium/indium oxide affords ketonization of ethyl alcohol with negligible by-product carbon monoxide, while indium oxide mainly affords dehydration of ethyl alcohol, and palladium affords decomposition of ethyl alcohol with large amount of by-product carbon monoxide. The catalytic feature of palladium/indium oxide can be ascribed to the formation o
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25

Perić, Tanja S., and Slobodan M. Janković. "Cardiotoxicity of Palladium Compounds / Kardiotoksičnost Jedinjenja Paladijuma." Journal of Medical Biochemistry 32, no. 1 (2013): 20–25. http://dx.doi.org/10.2478/v10011-012-0010-5.

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SummaryPrevious studies have shown that palladium has toxic effects on the kidney and liver, leads to deterioration of the general condition of animals, and could cause allergy in animals and humans. Considering the limited data about the influence of palladium on the cardiovascular system, the aim of our study was to evaluate the effects of palladium on the heart from available published data, and to compare the toxicity of inorganic and organic palladium compounds. Relevant studies for our review were identified from PubMed and Scopus databases. The search terms included »palladium «, »palla
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Li, Yuanjiao, Janine Mauzeroll, and Samuel Charles Perry. "Fabrication of a Palladium Hydride pH Microelectrode with an Extended Lifetime." ECS Meeting Abstracts MA2023-02, no. 62 (2023): 2931. http://dx.doi.org/10.1149/ma2023-02622931mtgabs.

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Stable miniaturized pH microelectrodes are crucial in exploring localized pH changes, but most suffer from instability and short lifetimes. Palladium hydride in a mixer phase has been reported to measure the solution pH taking advantage of the interaction between the alloyed hydrogen atoms and hydrogen ions in the solution. However, with the escape of the hydrogen atoms from the palladium lattice, the palladium hydride will transition to single phase and become invalid for pH measurement. The duration of the mixer-phase palladium hydride is even shorter as the sensor is made small. A method to
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27

Sun, Haimin, Xinlei Chen, Jiang Zhu, Zhu Chen, and Saijuan Chen. "Palladin Regulates Receptor Clustering and Actin Dynamics in Phagocytosis." Blood 128, no. 22 (2016): 2505. http://dx.doi.org/10.1182/blood.v128.22.2505.2505.

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Abstract BACKGROUND: Palladin is an actin microfilament associated protein, which together with myotilin and myopalladin form a novel cytoskeletal IgC2 domain protein family. However, little is known about the function of Palladin in myeloid cells. Here, we focus on the function of Palladin in phagocytosis. METHODS: We used ATRA induced differentiated NB4 cells as neutrophil-like cells, and lenti-viruses were used to build cell lines with palladin or ocrl knockdown and VAMP3-mcherry overexpression. Flow cytometry and immunofluorescence were used to detect the phagocytic ability under condition
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28

Ning, Yuantao. "Alloying and Strengthening Effects of Rare Earths in Palladium." Platinum Metals Review 46, no. 3 (2002): 108–15. http://dx.doi.org/10.1595/003214002x463108115.

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The effect of adding small amounts of rare earth elements to Palladium is to strengthen the Palladium. These strengthening effects are discussed here, based on known phase diagrams of Palladium-rare earths, Palladium-rare earth alloying behaviour and atomic (or ionic) size effects. The Solid solubilities of the rare earths in Palladium, transition temperatures of various intermediate phases and eutectic temperature in these systems are influenced by the ionic (or atomic) size of the rare earth elements. A parameter, Hs, the product of the relative difference in atomic weights and the relative
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Lee, Jong Ho, Choong Soo Chi, and Han Jun Oh. "Synthesis and Kinetic of Palladium Nanotube Using Polymer Compound." Key Engineering Materials 543 (March 2013): 137–40. http://dx.doi.org/10.4028/www.scientific.net/kem.543.137.

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The palladium nanotube was synthesized by template wetting and annealing process. And the activation energy for formation of the palladium metal from palladium acetate was evaluated. The activation energy was evaluated by Friedman method and the values were in the ranges between 65 and 98 kJ/mol. The diameters and lengths of synthesized palladium nanotubes ranged from 130 to 190 nm and from 2 to 3 μm, respectively. The palladium nanotubes can be successfully fabricated by the template wetting process, and the crystalline structure is confirmed by XRD. From DSC results the thermal decomposition
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30

Yin, Yanru, Changna Wen, Ning Ma, et al. "Sodium Alginate-Assisted Synthesis of PdAg Bimetallic Nanoparticles and their Enhanced Activity for Electrooxidation of Ethanol." Nano 14, no. 09 (2019): 1950120. http://dx.doi.org/10.1142/s1793292019501200.

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Palladium and palladium-silver bimetallic nanocrystals have been synthesized hydrothermally by using environmental-friendly sodium alginate as the stabilizer and reducing agent. The pure palladium nanoparticles were spherical-like possibly due to the principle of the lowest surface energy, however, the formation of bimetallic palladium-silver nanoparticles was much more complicated, which was thinner and more irregular nanostructures than pure palladium nanoparticles. Electrochemical measurements showed that the electrocatalytic activity toward ethanol oxidation was increased first with the in
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Kintrup, Jürgen, and Harald Züchner. "XPS Investigations on Solid and Vacuum Deposited, Oxidized and Non-oxidized Palladium." Zeitschrift für Naturforschung A 50, no. 4-5 (1995): 381–87. http://dx.doi.org/10.1515/zna-1995-4-510.

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Abstract X-ray photoelectron spectroscopy (XPS) has been carried out to study the reaction of differently prepared palladium samples (solid and film Pd) with atmospheric oxygen. A careful curve fitting of the measured Pd-3d5/2 peak allows to separate the Pd-3d5/2 peak for Pd in surface PdO from the dominant Pd-3d5/2 peak of the non-oxidized bulk palladium and to determine the chemical shift of the "oxidized" Pa line with high accuracy. Differences in the chemical shifts for the surface PdO on solid and film palladium are explained by a different charging caused by the photoelectric effect in X
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Boriskin, O. I., S. N. Larin, G. A. Nuzhdin, and I. V. Murav’eva. "THE PALLADIUM COMPLEXES DURING THERMAL DECOMPOSITION PHASE COMPOSITION INVESTIGATION." Kontrol'. Diagnostika, no. 290 (August 2022): 44–48. http://dx.doi.org/10.14489/td.2022.08.pp.044-048.

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In palladium refining technologies, as well as in some analytical procedures, complexes of bivalent palladium with diimines, amines, oximes, thiourea, and other compounds are used. In the technologies used, complex compounds of palladium are subjected to thermal decomposition, during which metallic palladium is formed. The precious metals market is seeing a rapid rise in the price of palladium on the back of a rapid increase in demand for it. It has been experimentally shown that active decomposition of dichlorodiamminepalladium Pd(NH3)2Cl2 and dimethylglyoximpalladium (C4H7N2O2)2Pd occurs at
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M, GANESH KUMAR, SUNDARABABU P.C, JOHNSON THANGARAJ EDWARD Y.S, and GAILCE LEO JUSTIN C. "INFLUENCE OF HOST EGGS ON THE ECOTYPES OF THE EGG PARASITOID Trichogramma chilonis ISHII." Madras Agricultural Journal 81, september (1994): 490–92. http://dx.doi.org/10.29321/maj.10.a01567.

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Six ecotypes of Trichogramma chilonis collected from Gudimangalam, Palladam, Udumalpet, Pongalur, Chingleput and Mettupalayam, were compared with the laboratory strain of the same species (Coimbatore). All the ecotypes were significantly superior to the laboratory strain in parasitizing the eggs of Corcyra cephalonica, Heliothis armigera and Spodoptera litura and showed a distinct preference for H. armigera eggs. The Palladam ecotype was able to withstand starvation to a maximum extent of 6.86 days.
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M, GANESH KUMAR, SUNDARABABU P.C, JOHNSON THANGARAJ EDWARD Y.S, and GAILCE LEO JUSTIN C. "INFLUENCE OF HOST EGGS ON THE ECOTYPES OF THE EGG PARASITOID Trichogramma chilonis ISHII." Madras Agricultural Journal 81, september (1994): 490–92. http://dx.doi.org/10.29321/maj.10.a01567.

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Six ecotypes of Trichogramma chilonis collected from Gudimangalam, Palladam, Udumalpet, Pongalur, Chingleput and Mettupalayam, were compared with the laboratory strain of the same species (Coimbatore). All the ecotypes were significantly superior to the laboratory strain in parasitizing the eggs of Corcyra cephalonica, Heliothis armigera and Spodoptera litura and showed a distinct preference for H. armigera eggs. The Palladam ecotype was able to withstand starvation to a maximum extent of 6.86 days.
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35

Parast, Mana M., and Carol A. Otey. "Characterization of Palladin, a Novel Protein Localized to Stress Fibers and Cell Adhesions." Journal of Cell Biology 150, no. 3 (2000): 643–56. http://dx.doi.org/10.1083/jcb.150.3.643.

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Here, we describe the identification of a novel phosphoprotein named palladin, which colocalizes with α-actinin in the stress fibers, focal adhesions, cell–cell junctions, and embryonic Z-lines. Palladin is expressed as a 90–92-kD doublet in fibroblasts and coimmunoprecipitates in a complex with α-actinin in fibroblast lysates. A cDNA encoding palladin was isolated by screening a mouse embryo library with mAbs. Palladin has a proline-rich region in the NH2-terminal half of the molecule and three tandem Ig C2 domains in the COOH-terminal half. In Northern and Western blots of chick and mouse ti
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36

Craft, Andrew. "A Case Study Approach: Summary of Some Results on the Effects of Hydrogen Exposure on the Mechanical Properties of Palladium and the Alloy Systems Pd1−xMx, M = Ag, Cu, Mn; x = 5 − 0.25." Hydrogen 4, no. 2 (2023): 237–56. http://dx.doi.org/10.3390/hydrogen4020017.

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Selected results of investigations focused on the changes to some mechanical properties of palladium and several palladium-based alloys caused by exposure to hydrogen have been collected and presented. The findings indicate that the mechanical properties of pure palladium are highly susceptible to alteration upon exposure to hydrogen. In the cases of alloying palladium with silver and copper, the alloys, as compared to palladium, appear to resist changes to mechanical properties. In the case of alloying palladium with manganese, the interesting order–disorder phenomenon plays an important role
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37

Olivo, Gema Ribeiro, and Michel Gauthier. "Palladium minerals from the Cauê iron mine, Itabira District, Minas Gerais, Brazil." Mineralogical Magazine 59, no. 396 (1995): 455–63. http://dx.doi.org/10.1180/minmag.1995.059.396.07.

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AbstractPalladium-bearing minerals from the Cauê iron mine, Itabira District, Minas Gerais, Brazil, are found in gold-rich jacutinga, a hydrothermally-altered Lake Superior-type carbonate-bearing oxide facies iron-formation. Palladium occurs as: native palladium with trace contents of Au, Fe and Cu; palladseite ((Pd,Cu,Hg)17Se15), which was found in the core of a grain of palladium; palladium–copper oxide ((Pd,Cu)O); and arsenopalladinite (Pd8(As,Sb)3), with inclusions of palladium–copper oxide. The palladium and palladium–copper oxide grains are coated with films of gold and commonly do not e
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38

Yoshimura, Akihiro, Shunta Tochigi, and Yasunari Matsuno. "Fundamental Study of Palladium Recycling Using “Dry Aqua Regia” Considering the Recovery from Spent Auto-catalyst." Journal of Sustainable Metallurgy 7, no. 1 (2021): 266–76. http://dx.doi.org/10.1007/s40831-020-00335-x.

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AbstractIn this research, a recycling process for palladium using “dry aqua regia,” which consists of iron(III) chloride–potassium chloride, was proposed. Palladium was dissolved in “dry aqua regia,” and the dissolved palladium was recovered by leaching with potassium chloride solution with added ammonium chloride and nitric acid. Palladium was almost completely dissolved in 3 h at 600 K, and the recovery ratio of dissolved palladium was up to 80%. In addition, the dissolution of palladium in coexistence with platinum and the dissolution of platinum-palladium alloy by “dry aqua regia” were als
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39

Yang, Yong Sheng, and Feng Zhao. "Promoting Effect of Chemical Self-Assembled Polyaniline Nanofibers and Electro-Polymerized Polyaniline in Formic Acid Electro-Oxidizing Reaction." Materials Science Forum 852 (April 2016): 646–52. http://dx.doi.org/10.4028/www.scientific.net/msf.852.646.

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In order to enhance catalytic properties of palladium or gold/palladium alloy on polyaniline surface, highly pure PANI nanofibers doped with phosphoric acid were synthesized via chemical self-assembled method. Its general morphology was observed by scanning electron microscopy analysis. The deposition of palladium or gold/palladium alloy on PANI nanofibers was accomplished through reducing reaction of PdCl2 or PdCl2/HAuCl4 in aqueous solution by NaBH4. Pd/PANI nanofibers or Au/Pd/PANI nanofibers have been evaluated for catalytic activity toward formic acid oxidation reaction. Palladium/PANI na
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40

Stromnova, Tatiana A. "Palladium(+1) Carbonyl Clusters in the Catalytic Oxidation of Unsaturated Compounds." Platinum Metals Review 47, no. 1 (2003): 20–27. http://dx.doi.org/10.1595/003214003x4712027.

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Some palladium carbonyl clusters containing the palladium in the (+1) formal oxidation state, and derivatives of these clusters investigated in our laboratories are examined in this paper. In particular, letranuclear carbonyl carboxylates of palladium are discussed as a model of key intermediates in various processes, including CO oxidation by a palladium catalyst with molecular oxygen as the oxidant. A second type of cluster, a palladium cationic cluster which contains N-donor ligands acts as a catalyst precursor for processes such as exhaust gas purification. A third type of palladium carbon
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41

Leniart, Andrzej, Barbara Burnat, Mariola Brycht, and Sławomira Skrzypek. "ROLA PALLADU W ELEKTROCHEMII: WŁAŚCIWOŚCI, PROCESY ELEKTROOSADZANIA I ZASTOSOWANIE." Wiadomości Chemiczne 78, no. 7 (2024): 987–1024. https://doi.org/10.53584/wiadchem.2024.07.10.

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Palladium is an investment metal that occurs extremely rarely, yet demand for this metal grows each year. Due to its unique properties, it plays a crucial role in many industrial sectors and everyday life. It is widely used in the automotive industry for catalytic converters, in the electronics sector for integrated circuits, in the energy sector as an electrode material in fuel cells, and for energy storage (hydrogen). Among many methods of obtaining palladium materials, electrochemistry holds great potential. By selecting appropriate parameters of electrodeposition process, it is possible to
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42

Zhao, Ji Shou, X. M. Zhang, and J. H. Dai. "Study on Dissolution Different of Metal Palladium Powder and Place." Advanced Materials Research 1033-1034 (October 2014): 1283–87. http://dx.doi.org/10.4028/www.scientific.net/amr.1033-1034.1283.

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The chemistry of the dissolution of Palladium in pressure-cyanide has not received considerable attention. At room temperature and pressures, the reaction between sodium cyanide and Palladium does not occur because of poor kinetics. However, at elevated temperatures between 100-160 °C, Palladium can be leached by sodium cyanide like the reaction of gold. A research study has been undertaken to develop the fundamentals of a method for the direct dissolution of Palladium In this work, the dissolution of Palladium powder and place were measured in pressure clear cyanide solution. The cyanide leac
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43

Polignano, Maria Luisa, Isabella Mica, Agostino Brambilla, et al. "Detection and Prevention of Palladium Contamination in Silicon Devices." Solid State Phenomena 242 (October 2015): 252–57. http://dx.doi.org/10.4028/www.scientific.net/ssp.242.252.

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In this work we report the results of a set of experiments carried out to assess the ability of recombination lifetime measurements for the detection of palladium contamination in silicon. Palladium is found to be a very effective recombination center, so recombination lifetime measurements are a very sensitive method to detect palladium in silicon. The surface segregation of palladium was monitored by the reduction of its recombination activity in the silicon volume. The palladium segregation at the wafer surface was checked by selective etching, and by Transmission Electron Microscopy (TEM)
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44

Cai, Shunshuo, Wanhan Hu, Yiman Liu, et al. "Optical fiber hydrogen sensor using metasurfaces composed of palladium." Chinese Optics Letters 20, no. 5 (2022): 053601. http://dx.doi.org/10.3788/col202220.053601.

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45

Kuntyi, Orest, Oksana Dobrovetska, Serhiy Korniy, Galyna Zozulya, and Galyna Mykhalyna. "Palladium Deposition on Magnesium in PdCl2 Solutions in DMF." Chemistry & Chemical Technology 8, no. 2 (2014): 193–96. http://dx.doi.org/10.23939/chcht08.02.193.

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46

Jeong, Sangjo, Hyungjin Choi, Sangjin Park, and Juneil Lee. "A Study on the Degradation Properties of Aqueous Trinitrotoluene by Palladium Catalyst and Formic Acid." Journal of Korean Society on Water Environment 31, no. 5 (2015): 468–75. http://dx.doi.org/10.15681/kswe.2015.31.5.468.

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47

Saldan, I. "Size and distribution of palladium nanoparticles electrodeposited on graphite." Functional materials 25, no. 1 (2018): 082–87. http://dx.doi.org/10.15407/fm25.01.082.

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48

D’souza, Melwin Diego, Poonam Dwivedi, Rama Lokhande, Tushar Anvekar, and Andrew Joseph D’souza. "Simple, Sensitive, and Easy to use Method for Determination of Palladium Content in Palladium Acetate Using Flame Atomic Absorption Spectrophotometry." Oriental Journal Of Chemistry 37, no. 4 (2021): 880–84. http://dx.doi.org/10.13005/ojc/370415.

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A simple, sensitive, and easy to use method for the determination of palladium content in palladium acetate was developed using homogeneous acid digestion of palladium acetate followed by atomic absorption spectrometry (AAS) analysis. Parameters affecting the extraction efficiency of palladium during digestion of palladium acetate were investigated and optimized. The palladium content was measured at 244.7 nm by atomic absorption (AA) spectrometers on PinAAcle™ 900 series with an air-acetylene flame. The linear calibration graph was observed in the range of 2.5-15 ppm with a limit of detection
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49

Canty, Allan J. "The +IV Oxidation State in Organopalladium Chemistry." Platinum Metals Review 37, no. 1 (1993): 2–7. http://dx.doi.org/10.1595/003214093x37127.

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The organometallic chemistry of palladium is dominated by the +II oxidation state, and the chemistry of complexes containing simple organic groups bonded to palladium in the +IV oxidation state has developed only recently. Organic synthesis and catalytic reactions that may involve undetected palladium(IV) intermediates have been suggested frequently, and the new oxidation state +IV chemistry provides some support for these proposals, and gives encouragement for the development of new systems involving palladium(IV). The chemistry of organopalladium(IV) is reviewed here, and possible catalytic
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50

Tanaka, Katsunori, and Katsumasa Fujiki. "Bis[N,N′-(2-indanolyl)]-1,5-diazacyclooctane as Unique Metal Ligand: Self-Assembly of Palladium Nanoparticles and Catalytic Reactivity on C–C Bond Formation." Synthesis 50, no. 05 (2017): 1097–104. http://dx.doi.org/10.1055/s-0036-1590956.

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A previously unreported 1,5-diazacyclooctane-palladium(II) complex was synthesized using bis[N,N′-(2-indanolyl)]-1,5-diazacyclooctane, which was readily prepared via a novel [4+4] homocyclization of the unsaturated imine intermediate generated from acrolein and 1-amino-2-indanol. Interestingly, the 1,5-diazacyclooctane-palladium(II) complex self-assembled to form palladium nanoparticles. This approach readily provided palladium nanoparticles simply by heating a mixture of palladium(II) acetate and bis[N,N′-(2-indanolyl)]-1,4-diazacyclooctane in dichloroethane at mild temperatures. The 1,5-diaz
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