Academic literature on the topic 'Silver copper iodide'

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Journal articles on the topic "Silver copper iodide"

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Sulistyarti, Hermin, Erwin Sulistyo, Sutrisno Sutrisno, and Zuri Rismiarti. "Metode Spektrofotometri Secara Tidak Langsung untuk Penentuan Merkuri(II) berdasarkan Pembentukan Kompleks Biru Iodium-Amilum." ALCHEMY Jurnal Penelitian Kimia 15, no. 1 (2019): 149. http://dx.doi.org/10.20961/alchemy.15.1.15036.149-164.

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<p>Metode spektrofotometri secara tidak langsung telah dikembangkan untuk analisis merkuri(II) berdasarkan perbedaan absorbansi kompleks biru amilum-iodium antara larutan sampel yang mengandung ion merkuri(II) dan larutan blanko yang tidak mengandung ion merkuri(II) dalam sistem pereaksi yang berisi iodida, iodat dan amilum. Pada larutan blanko, semua ion iodida (I<sup>-</sup>) dalam sistem pereaksi dioksidasi oleh iodat menjadi iodium yang dengan adanya amilum membentuk kompleks biru iodium-amilum dan terdeteksi secara spektrofotometri pada 618 nm. Namun, bila sampel mengand
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Cha, Ji-Hyun, and Duk-Young Jung. "Air-Stable Transparent Silver Iodide–Copper Iodide Heterojunction Diode." ACS Applied Materials & Interfaces 9, no. 50 (2017): 43807–13. http://dx.doi.org/10.1021/acsami.7b14378.

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Nicholas, Aaron D., Francis H. Barnes, Daniel R. Adams, et al. "Understanding the vapochromic response of mixed copper(i) iodide/silver(i) Iodide nanoparticles toward dimethyl sulfide." Physical Chemistry Chemical Physics 22, no. 20 (2020): 11296–306. http://dx.doi.org/10.1039/d0cp00504e.

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Ullah, Saif, Timo Thonhauser, and Marcos G. Menezes. "Optoelectronic properties of novel layered materials under encapsulation: 2D Copper Iodide and Silver Iodide." Applied Materials Today 41 (December 2024): 102495. http://dx.doi.org/10.1016/j.apmt.2024.102495.

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Costa, Leonor, Margarida Nunes, Sónia Costa, Milene Trindade, Catarina Miguel, and Teresa Ferreira. "Unveiling the Ambrotype: Characterization of Two 19th Century Photographs." Microscopy and Microanalysis 25, no. 1 (2018): 203–13. http://dx.doi.org/10.1017/s1431927618000429.

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AbstractThis work used a multi-analytical approach to characterize two 19th century ambrotypes and was motivated by the lack of insight on these historical objects. Photographic imaging and optical microscopy (OM) were used to identify abrasions, cracks related to reticulation, tarnishing, and other aspects associated to production and degradation processes. With variable pressure scanning electron microscopy coupled with energy-dispersive X-ray spectroscopy (EDS) these processes were seen with great detail and further characterized. Elemental point analysis and elemental mapping showed that t
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Mohamed Saheed, Mohamed Salleh, Norani Muti Mohamed, Balbir Singh Mahinder Singh, Mohamed Shuaib Mohamed Saheed, and Rajan Jose. "Optoelectronic Enhancement of Perovskite Solar Cells through the Incorporation of Plasmonic Particles." Micromachines 13, no. 7 (2022): 999. http://dx.doi.org/10.3390/mi13070999.

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The optoelectronic advantages of anchoring plasmonic silver and copper particles and non-plasmonic titanium particles onto zinc oxide (ZnO) nanoflower (NF) scaffolds for the fabrication of perovskite solar cells (PSCs) are addressed in this article. The metallic particles were sputter-deposited as a function of sputtering time to vary their size on solution-grown ZnO NFs on which methylammonium lead iodide perovskite was crystallized in a controlled environment. Optical absorption measurements showed impressive improvements in the light-harvesting efficiency (LHE) of the devices using silver n
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McKeage, Mark J., Peter Papathanasiou, Geoffrey Salem, et al. "Antitumor Activity of Gold(I), Silver(I) and Copper(I) Complexes Containing Chiral Tertiary Phosphines." Metal-Based Drugs 5, no. 4 (1998): 217–23. http://dx.doi.org/10.1155/mbd.1998.217.

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The in vitro cytotoxicities of a number of gold(I), silver(I) and copper(I) complexes containing chiral tertiary phosphine ligands have been examined against the mouse tumour cell lines P815 mastocytoma, B16 melanoma [gold(I) and silver(I) compounds] and P388 leukaemia [gold(I) complexes only] with many of the complexes having IC50 values comparable to that of the reference compounds cis-diamminedichloroplatinum(ll), cisplatin, and bis[1,2-bis(diphenylphosphino) ethane]gold(I) iodide. The chiral tertiary phosphine ligands used in this study include (R)-(2-aminophenyl)methylphenylphosphine; (R,
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Stafford, A. J., M. Silbert, J. Trullas, and A. Giro. "Potentials and correlation functions for the copper halide and silver iodide melts. I. Static correlations." Journal of Physics: Condensed Matter 2, no. 31 (1990): 6631–41. http://dx.doi.org/10.1088/0953-8984/2/31/016.

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Friesel, Milan, Bogdan Baranowski, and Arnold Lunden. "Phase transitions of the system silver mercury iodide (Ag2HgI4)-copper mercury iodide (Cu2HgI4) at normal and high pressure studied by differential scanning calorimetry." Journal of Physical Chemistry 94, no. 3 (1990): 1113–17. http://dx.doi.org/10.1021/j100366a019.

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Gallyas, F., and J. R. Wolff. "Metal-catalyzed oxidation renders silver intensification selective. Applications for the histochemistry of diaminobenzidine and neurofibrillary changes." Journal of Histochemistry & Cytochemistry 34, no. 12 (1986): 1667–72. http://dx.doi.org/10.1177/34.12.3537114.

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Physical developers can increase the visibility of end products of certain histochemical reactions, such as oxidative polymerization of diaminobenzidine and selective binding of complex silver iodide ions to Alzheimer's neurofibrillary changes. Unfortunately, this intensification by silver coating is generally superimposed on a nonspecific staining originating from the argyrophil III reaction, which also takes place when tissue sections are treated with physical developers. The present study reveals that the argyrophil III reaction can be suppressed when tissue sections are treated with certai
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Dissertations / Theses on the topic "Silver copper iodide"

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Madkhali, Osama. "Structural, optical and electrical properties of copper and silver-copper iodide thin films." Electronic Thesis or Diss., Université de Lorraine, 2021. http://www.theses.fr/2021LORR0253.

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Dans cette thèse, nous avons étudié la formation de couches minces d'iodure de cuivre (CuI) et d'iodure de cuivre argent (Ag,Cu)I à partir d'une procédure en deux étapes : dépôt d'un film métallique par pulvérisation magnétron et ioduration dans de la vapeur d'iode. De nombreuses techniques ont été utilisées pour déterminer les propriétés des films telles que : diffraction des rayons X, microscopie électronique à transmission, effet Hall, spectroscopie UV-visible… Pour les films CuI, nous avons obtenu des films semi- conducteurs transparents de type p cristallisant dans une structure type γ-Cu
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Sansom, H. C. "Copper and silver bismuth iodide semiconductors as potential solar cell absorber materials." Thesis, University of Liverpool, 2018. http://livrepository.liverpool.ac.uk/3028034/.

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Blades, William H. "Electronic Structure and Stability of Ligated Superatoms and Bimetallic Clusters." VCU Scholars Compass, 2016. http://scholarscompass.vcu.edu/etd/4292.

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Quantum confinement in small metal clusters leads to a bunching of states into electronic shells reminiscent of shells in atoms. The addition of ligands can tune the valence electron count and electron distribution in metal clusters. A combined experimental and theoretical study of the reactivity of methanol with AlnIm− clusters reveals that ligands can enhance the stability of clusters. In some cases the electronegative ligand may perturb the charge density of the metallic core generating active sites that can lead to the etching of the cluster. Also, an investigation is conducted to unde
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Book chapters on the topic "Silver copper iodide"

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Root, Douglas D., and Kuan Wang. "Copper Iodide Staining of Proteins and Its Silver Enhancement." In Springer Protocols Handbooks. Humana Press, 2009. http://dx.doi.org/10.1007/978-1-59745-198-7_72.

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"Silver Iodate." In Copper and Silver Halates. Elsevier, 1990. http://dx.doi.org/10.1016/b978-0-08-029208-3.50011-0.

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"Copper (II) Iodate." In Copper and Silver Halates. Elsevier, 1990. http://dx.doi.org/10.1016/b978-0-08-029208-3.50008-0.

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AWANO, TERUYOSHI, and TOSHIHARU TAKAHASHI. "MILLIMETER WAVE ABSORPTION BANDS OF SILVER/COPPER IODIDES-PHOSPHATE GLASSES." In Solid State Ionics. WORLD SCIENTIFIC, 2012. http://dx.doi.org/10.1142/9789814415040_0068.

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Lambert, Tristan H. "Functional Group Interconversion." In Organic Synthesis. Oxford University Press, 2015. http://dx.doi.org/10.1093/oso/9780190200794.003.0004.

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Chaozhong Li of the Shanghai Institute of Organic Chemistry reported (J. Am. Chem. Soc. 2012, 134, 10401) the silver nitrate catalyzed decarboxylative fluorination of carboxylic acids, which shows interesting chemoselectivity in substrates such as 1. A related decarboxylative chlorination was also reported by Li (J. Am. Chem. Soc. 2012, 134, 4258). Masahito Ochiai at the University of Tokushima has developed (Chem. Commun. 2012, 48, 982) an iodobenzene-catalyzed Hofmann rearrangement (e.g., 3 to 4) that proceeds via hypervalent iodine intermediates. The dehydrating agent T3P (propylphosphonic
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Conference papers on the topic "Silver copper iodide"

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Lefevre, Matthew, Emmanuel Noraz, and Damien Veychard. "Repeatable Method for Automated Decapsulation of Silver Alloy Wire Packages." In ISTFA 2015. ASM International, 2015. http://dx.doi.org/10.31399/asm.cp.istfa2015p0491.

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Abstract Over the past several years there has been a large industry wide effort to change over from gold bonding wires to copper in order to minimize production costs. In certain cases this is not possible due to the relatively high hardness values of Cu [1], which leads to reliability issues in the manufacturing process. Silver (Ag) wire has been proposed and successfully implemented in many instances where Cu wire was not practicable. Unfortunately, currently integrated decapsulation methods severely damaged or destroyed the silver wires and bonds, making it impossible to perform production
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KWAK, A. "Application of Zinc-Silver Impregnated Activated Carbons in Removal of Lead(II) and Mercury(II) Compounds from Groundwater." In Quality Production Improvement and System Safety. Materials Research Forum LLC, 2023. http://dx.doi.org/10.21741/9781644902691-9.

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Abstract. Nowadays activated carbon is a material generating great interest, as it is characterized by a vast surface area due to a high number of pores in its structure. Therefore, the main purpose behind its use is the filtration of impurities from air and water that can be adsorbed with high efficiency. Activated carbon can be easily modified as well. The paper describes activated carbon modification with copper-, manganese-, silver- and zinc salts. The effects of the selected impregnates and their concentrations were examined. The products included 5 adsorbent samples: four universal adsor
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