Academic literature on the topic 'Microdetermination of Palladium (II)'

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Journal articles on the topic "Microdetermination of Palladium (II)"

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Sonia, Nain, Agnihotri N., and R. Kakkar L. "Microdetermination of palladium using benzildioxime and thiocyanate." Journal of Indian Chemical Society Vol. 83, Jul 2006 (2006): 707–8. https://doi.org/10.5281/zenodo.5824515.

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Department of Chemistry, Kurukshetra University, Kurukshetra-136 119, Haryana, India <em>Manuscript received 7 April 2006, accepted 20 April 2006</em> Palladium(II) forms a light yellow 1 : 1 :2 complex with benzildioxime in presence of thiobyanate at 0.10-1.00 mol L<sup>-1</sup> HCI.The complex is non-extractable in nature and shows absorption maximum at 363-368 nm.The molar absorptivity of the complex is 3.088 x 10<sup>3</sup> L mol<sup>-1</sup>&nbsp;cm<sup>-1&nbsp;</sup>with a Beer&#39;s law range of 0-15.5 &mu;g ml<sup>-1&nbsp;</sup>The method Is quite simple and rapid and has been satisfa
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Kaur, N., N. Agnihotri, and U. Berar. "Microdetermination of Palladium(II) using 6-Chloro-3-hydroxy-7-methyl-2-(2′-thienyl)-4-oxo-4H-1-benzopyran." Asian Journal of Chemistry 32, no. 7 (2020): 1597–602. http://dx.doi.org/10.14233/ajchem.2020.22610.

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A simple, rapid, sensitive and selective extractive spectrophotometric method is developed for the trace determination of palladium(II) from NaHCO3 medium using 6-chloro-3-hydroxy-7-methyl-2- (2′-thienyl)-4-oxo-4H-1-benzopyran (CHMTB) as a colouring agent. The proposed metal complex can be quantitatively extracted into ethyl acetate and absorbs maximum in the wavelength range 415-426 nm. The 1:1 yellow complex obeys linearity over the Pd(II) concentration range of 0-2.6 μg mL-1; the correlation coefficient being 0.9998. The molar annihilation coefficient and Sandell′s sensitivity when applying
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Sonia, Nain, Agnihotri N., and R. Kakkar L. "Microdetermination of palladium(II) using 5-chloro-8-hydroxy-7-iodoquinoline as a complexing agent." Journal of Indian Chemical Society Vol. 85, Feb 2008 (2008): 228–30. https://doi.org/10.5281/zenodo.5808987.

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Department of Chemistry, Kurukshetra University, Kurukshetra-136 119, Haryana, India <em>E-mail :</em> lather_sonia@yahoo.com <em>Manuscript received 28 May 2007, revised 5 November 2007, accepted 15 November 2007</em> A simple, rapid, highly selective and sensitive method for the spectrophotometric determination of palladium(II) in trace amounts is worked out employing 5-chloro-8-hydroxy-7-iodoquinoline as a complexing agent for the metal ion and extracting the coloured complex into chloroform from 1 <em>M</em> H<sub>2</sub>SO<sub>4</sub> solution, whose absorbance is measured at 450 nm. Beer
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Kabil, M. A., S. E. Ghazy, A. A. El-Asmy, and Y. E. Sherif. "Simultaneous separation and microdetermination of cobalt(II), nickel(II) and copper(II)." Fresenius Journal of Analytical Chemistry 357, no. 4 (1997): 401–4. http://dx.doi.org/10.1007/s002160050178.

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Noh, Sang-Gyun. "Palladium(II) Acetate." Synlett 1999, no. 4 (1999): 504. http://dx.doi.org/10.1055/s-1999-5992.

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., Kusum, Amita Garg, Radhika Khanna, Surbhi Soni, and Gunjan Chauhan. "Microdetermination of Iron: A Review." Research Journal of Chemistry and Environment 26, no. 6 (2022): 157–64. http://dx.doi.org/10.25303/2606rjce157164.

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Iron, the fourth most prevalent element in the earth's crust, is found in low quantities in the soil and in dissolved form to a limited extent in groundwater and the ocean. It plays an important role in oxygen and electron transport system, is present in various enzymes like catalase, oxidase, reductases, dehydrogenases and dehydrases42. Various oxidation states were shown out of which Fe (II) and Fe (III)28 are the common oxidation states. Iron plays a crucial role as its deficiency leads to anemia whereas higher amount leads to increase in risk for liver damage, cancer, cardiovascular diseas
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Patra, Shanti G., Nirmal K. Shee, Michael G. B. Drew, and Dipankar Datta. "Palladium(ii)–palladium(ii) bonding in two open clamshell dinuclear complexes." New Journal of Chemistry 41, no. 15 (2017): 7384–91. http://dx.doi.org/10.1039/c7nj01604b.

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Tannai, Hidenori, Kiyoshi Tsuge, and Yoichi Sasaki. "Palladium(II) and Palladium(II)–Platinum(II) Mixed Metal Complexes with Mercapto-1,3,4-thiadiazolate." Bulletin of the Chemical Society of Japan 79, no. 8 (2006): 1223–30. http://dx.doi.org/10.1246/bcsj.79.1223.

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Sloan, Olivier D., and Peter Thornton. "Mixed copper(II)-palladium(II) acetates." Inorganica Chimica Acta 120, no. 2 (1986): 173–75. http://dx.doi.org/10.1016/s0020-1693(00)86105-8.

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Steyl, Gideon. "Bis(tropolonato)palladium(II)." Acta Crystallographica Section E Structure Reports Online 61, no. 9 (2005): m1860—m1862. http://dx.doi.org/10.1107/s1600536805026619.

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Dissertations / Theses on the topic "Microdetermination of Palladium (II)"

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Lindh, Jonas. "Palladium(II)-Catalyzed Coupling Reactions." Doctoral thesis, Uppsala universitet, Avdelningen för organisk farmaceutisk kemi, 2010. http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-130031.

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Sustainable chemical processes are becoming increasingly important in all fields of synthetic chemistry. Catalysis can play an important role in developing environmentally benign chemical processes, and transition metals have an important role to play in the area of green chemistry. In particular, palladium(II) catalysis includes many key features for successful green chemistry methods, as demonstrated by a number of eco-friendly oxidation reactions catalyzed by palladium(II). The aim of the work presented in this thesis was to develop novel and greener palladium(II)-catalyzed coupling reactio
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Kunte, Thomas. "Polyolato-Komplexe mit Kupfer(II) und Palladium(II)." Diss., lmu, 2002. http://edoc.ub.uni-muenchen.de/171/.

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Zuideveld, Martin Alexander. "Solvolysis of palladium-carbon bonds in palladium(II) complexes containing diphosphine ligands." [S.l. : Amsterdam : s.n.] ; Universiteit van Amsterdam [Host], 2001. http://dare.uva.nl/document/60731.

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Draeger, Christian. "Mesoskopische Micellen aus amphiphilen Bipyridylkomplexen von Ruthenium(II), Osmium(II) und Palladium(II)." [S.l. : s.n.], 2001. http://www.diss.fu-berlin.de/2001/194/index.html.

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Pascu, Sofia I. "Nickel (II), palladium (II), platinum (II) and rhodium (I) complexes of iminophosphine ligands." Thesis, University of Oxford, 2002. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.270258.

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Fuller, Anne-Marie L. "Palladium(II) templated syntheses of interlocked architectures." Thesis, University of Edinburgh, 2007. http://hdl.handle.net/1842/14882.

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Herein, the application of palladium(II) combined with a “3+1” pyridine-2,6-dicarboxamido and pyridine heteroligand set is described. While it may seem reasonable to expect that a two-dimensional coordination geometry would not be well suited for the synthesis of inherently three-dimensional interlocked architectures, the reverse has been shown to been true. Indeed, it has proven itself to be a very proficient and versatile template motif, exemplified by the syntheses of various multi-component architectures. Initially, this template was applied to the synthesis of the first [2]rotaxane whose
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Dornan, Laura M. "Selective oxidation reactions catalysed by Palladium (II)." Thesis, Queen's University Belfast, 2016. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.706457.

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Carbonyls are an extremely important class of compounds and have been used in many different industries, including pharmaceuticals, fine chemicals, polymers and bulk commodities. The synthesis of carbonyl compounds through the oxidation of an alcohol or an alkene is an inherently straightforward protocol but despite this, oxidation reactions tend to be avoided industrially. This avoidance can be attributed to the lack of useful and safe methods for oxidation reactions. In this thesis, the oxidation of both alcohols and alkenes to their corresponding carbonyl compounds will be investigated usin
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Erven, Anja Pascale. "Neue Platin(II)- und Palladium(II)-Komplexe mit zweizähnigen Phosphan-Liganden." [S.l. : s.n.], 2003. http://deposit.ddb.de/cgi-bin/dokserv?idn=971019355.

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Shaykh, B. A. M. "Reactivity of triborane with phosphino palladium(II) and platinum(II) chlorides." Thesis, University of Cambridge, 1990. https://www.repository.cam.ac.uk/handle/1810/272948.

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Fazio, Daniela. "Synthesis and mesomorphism of polycatenar complexes of palladium (II) and platinum (II)." Thesis, University of Exeter, 2001. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.366619.

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Books on the topic "Microdetermination of Palladium (II)"

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Just, Berthold. Nickel(II)-, Palladium(II)- [Nickel-, Palladium-] und Platin(II)-Komplexe [Platin-Komplexe] phosphororganischer Dithio- und Trithioliganden und deren Verhalten gegenüber Phosphor-Donoren. [s.n.], 1985.

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Rush, Stephen Howard. Palladium(II)-catalysed polymerisation of 3,3-disubtituted cyclopropenes. University College Dublin, 1996.

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Mossi, Waldo. Ortho-C-H-Aktivierung in modifizierten meta-Toluidinen durch Palladium(II). [s.n.], 1994.

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King, Richard N. The preparation of some Palladium (II) complexes and their activities in sulfur dioxide removal. UMIST, 1995.

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Brennecke, Hanns Christof, Uta Heil, and Annette Stockhausen, eds. Band II: Die „Apologien“, Lfg 8, Apologia ad Constantium / Epistula ad Ioannem et Antiochum / Epistula ad Palladium / Epistula ad Dracontium / Epistula ad Afros / Tomus ad Antiochenos / Epistula ad Jovianum / Epistula Joviani ad Athanasium / Petitiones Arianorum. DE GRUYTER, 2006. http://dx.doi.org/10.1515/9783110924046.

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Zhi, He. Palladium(II)-catalyzed oxidative activation of arylcyclopropanes. 2006.

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Dombek, Jürgen. Untersuchungen zur Palladium-(II)-katalysierten 1,6-Enin-Cyclisierung. 1991.

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Siembieda, Kevin. The Palladium Rpg Book II: Old Ones (Fantasy Adventure, No 2). 2nd ed. Palladium Books, 1996.

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Puddephatt, R. J. Comprehensive Organometallic Chemistry II : Nickel, Palladium and Platinum (Comprehensive Organometallic Chemistry II). Pergamon, 1995.

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Künstler, Thomas. Die Oligomerisierung von Alkinolen an Palladium (II)-acetat/Phosphan-Komplexen. 1993.

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Book chapters on the topic "Microdetermination of Palladium (II)"

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Berry, John F., F. Albert Cotton, Sergey Ibragimov, Carlos A. Murillo, Daren J. Timmons, and Kyle A. Fricke. "Trinuclear Palladium(II) Acetate." In Inorganic Syntheses: Volume 36. John Wiley & Sons, Inc., 2014. http://dx.doi.org/10.1002/9781118744994.ch33.

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Ford, P. C. "Of Nickel(II) and Palladium(II)." In Inorganic Reactions and Methods. John Wiley & Sons, Inc., 2007. http://dx.doi.org/10.1002/9780470145302.ch74.

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Tatsuno, Yoshitaka, Toshikatsu Yoshida, Seiotsuka, Najeeb Al-Salem, and Bernard L. Shaw. "(η3 -Allyl)Palladium(II) Complexes." In Inorganic Syntheses. John Wiley & Sons, Inc., 2007. http://dx.doi.org/10.1002/9780470132500.ch51.

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Tatsuno, Yoshitaka, Toshikatsu Yoshida, Sei Otsuka, Najeeb Al-Salem, and Bernard L. Shaw. "(η3 -Allyl)Palladium(II) Complexes." In Inorganic Syntheses. John Wiley & Sons, Inc., 2007. http://dx.doi.org/10.1002/9780470132593.ch88.

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Hadjiliadis, Nick, P. K. Mascharak, and S. J. Lippard. "Cis- andTrans-Dichloro-Bis(Nucleoside)Palladium(II),Cis- andTrans- Bis(Nucleosidato)Palladium(II), andCis- andTrans- Bis(Nucleoside)Bis(Nucleoside′)Palladium(II) Dichloride or Tetrakis(Nucleoside)Palladium(II) Dichloride." In Inorganic Syntheses. John Wiley & Sons, Inc., 2007. http://dx.doi.org/10.1002/9780470132548.ch13.

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White, D. A., J. R. Doyle, and H. Lewis. "Cationic Diene Complexes of Palladium(II) and Platinum(II)." In Inorganic Syntheses. John Wiley & Sons, Inc., 2007. http://dx.doi.org/10.1002/9780470132449.ch12.

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Jack Mccormick, B., Edgar N. Jaynes, Roy I. Kaplan, H. C. Clark, and J. D. Ruddick. "Dichloro(ethylenediamine)palladium(II) and (2,2′-Bipyridine)dichloropalladium (II)." In Inorganic Syntheses. John Wiley & Sons, Inc., 2007. http://dx.doi.org/10.1002/9780470132449.ch44.

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Ho, C. Y., R. H. Bogaard, H. M. James, T. C. Chi, and T. N. Havill. "Thermoelectric Power of Selected Binary Alloy Systems Part II — Copper-Palladium, Gold-Palladium, and Silver-Palladium." In Thermal Conductivity 18. Springer US, 1985. http://dx.doi.org/10.1007/978-1-4684-4916-7_18.

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Walker, F. S., S. N. Bhattacharya, C. V. Senoff, Kent Barefield, and Gary M. Freeman. "30. Alkylated Polyamine Complexes of Palladium(II)." In Inorganic Syntheses. John Wiley & Sons, Inc., 2007. http://dx.doi.org/10.1002/9780470132524.ch30.

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Christen, Dines. "Molecular constants of OPd X3Σ– palladium oxide." In Landolt-Börnstein - Group II Molecules and Radicals. Springer Berlin Heidelberg, 2021. http://dx.doi.org/10.1007/978-3-662-62327-5_203.

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Conference papers on the topic "Microdetermination of Palladium (II)"

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El-Maraghy, Salah B., K. A. Salib, and S. L. Stefen. "Palladium (II) Hydrazopyrazolone Complexes." In Intl Conf on Fourier and Computerized Infrared Spectroscopy, edited by David G. Cameron. SPIE, 1989. http://dx.doi.org/10.1117/12.969594.

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Kesić, Ana, Jovana Bogojeski, Ivana Raković, and Ivana Radojević. "Biological studies of organoselenium trans-palladium(II) complexes." In 7th International Electronic Conference on Medicinal Chemistry. MDPI, 2021. http://dx.doi.org/10.3390/ecmc2021-11448.

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Trieu, Quoc-An, Trung Huu Bui, Guilhem Arachart, Stéphane Pellet-Rostaing, and Stéphane Daniele. "Surface modification of nano-ZrO2 for adsorption of palladium and gold." In II INTERNATIONAL SCIENTIFIC FORUM ON COMPUTER AND ENERGY SCIENCES (WFCES-II 2021). AIP Publishing, 2022. http://dx.doi.org/10.1063/5.0099647.

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Uemura, Sakae, Nobuyuki Kakiuchi, Takahiro Nishimura, and Masashi Inoue. "Palladium(II) Supported by Hydrotalcite[Pd(II)-Hydrotalcite]-Catalyzed Selective Oxidation of Alcohols Using Molecular Oxygen." In The 4th International Electronic Conference on Synthetic Organic Chemistry. MDPI, 2000. http://dx.doi.org/10.3390/ecsoc-4-01808.

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Yan, Tao, Qing Liu, Yanming Yang, Qin Wei, and Bin Du. "Catalytic Kinetic Spectrophotometric Determination of Trace Palladium (II) with Poniacyl Carmine 2B." In 2009 3rd International Conference on Bioinformatics and Biomedical Engineering (iCBBE). IEEE, 2009. http://dx.doi.org/10.1109/icbbe.2009.5162476.

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Kepeňová, Martina, Michaela Benediková, Mária Vilková, Miroslava Litecká, and Ivan Potočňák. "Ionic palladium(II) complexes with nitro and halogen derivatives of 8-hydroxyquinoline." In 2nd International Conference on Chemo and Bioinformatics. Institute for Information Technologies, University of Kragujevac, 2023. http://dx.doi.org/10.46793/iccbi23.443k.

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Four commercially unavailable derivatives of 8-hydroxyquinoline with different functional groups (nitro and halogen) in positions 5 and 7 were prepared: 5-nitro-7-iodo-8-hydroxyquinoline (HNIQ), 5-nitro-7-bromo-8-hydroxyquinoline (HNBrQ), 5-iodo-7-bromo-8-hydroxyquinoline (HIBrQ) and 5-chloro-7-bromo-8-hydroxyquinoline (HClBrQ). Their characterization was performed by IR and NMR spectroscopy, elemental analysis and in the case of HIBrQ and HClBrQ by single crystal X-ray structure analysis. Prepared compounds were used for the synthesis of new palladium(II) complexes NH2(CH3)2[PdCl2(XQ)], where
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Petrović, Đorđe, Maja Đukić, Edina Avdović, et al. "DNA binding and molecular docking of four palladium(II) complexes with O,O’-dialkyl esters of (S,S)-propylenediamine-N,N’-di-2-(2-benzyl) acetic acid." In 2nd International Conference on Chemo and Bioinformatics. Institute for Information Technologies, University of Kragujevac, 2023. http://dx.doi.org/10.46793/iccbi23.539p.

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The antitumor activity of platinum-based complexes still captures the attention of scientists and new potential drugs are being synthesized and investigated. Although complexes of palladium(II) ion show less cytotoxicity compared to platinum(II) complexes due to the high reactivity of the palladium center, research in this field has continued and many authors have found that auxiliary chelating ligands can improve complex stability and their cytotoxicity. As a consequence of rapid ligand exchange, the probability of palladium(II) complexes reaching the biological target in organisms seems to b
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Bakaev, I. V., N. F. Romashev, and A. L. Gushchin. "PALLADIUM(II) AND RHODIUM(III) COMPLEXES WITH ACENAPHTHENEMONOARYLHYDRAZONES: SYNTHESIS, STRUCTURE AND PHYSICOCHEMICAL PROPERTIES." In XXIII МЕЖДУНАРОДНАЯ ЧЕРНЯЕВСКАЯ КОНФЕРЕНЦИЯ ПО ХИМИИ, АНАЛИТИКЕ И ТЕХНОЛОГИИ ПЛАТИНОВЫХ МЕТАЛЛОВ. NIIC SB RAS, 2022. http://dx.doi.org/10.26902/chern-2022-100.

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Boyarsky, V., A. Mikherdov, S. Baikov, P. Savko, R. Suezov та R. Trifonov. "С,N-CHELATED CARBENE COMPLEXES OF PALLADIUM(II) AS POTENTIAL PHARMACOLOGICALLY ACTIVE COMPOUNDS". У MedChem-Russia 2021. 5-я Российская конференция по медицинской химии с международным участием «МедХим-Россия 2021». Издательство Волгоградского государственного медицинского университета, 2021. http://dx.doi.org/10.19163/medchemrussia2021-2021-50.

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Kostić, Marina, Vera Divac, and Sven Mangelinckx. "SYNTHESIS AND CHARACTERIZATION OF PALLADIUM (II)–2- (AZIDOMETHYL)CYCLOPROPANE-1,1-DICARBOXYLIC ACID COMPLEX." In 1st INTERNATIONAL Conference on Chemo and BioInformatics. Institute for Information Technologies, University of Kragujevac, 2021. http://dx.doi.org/10.46793/iccbi21.297k.

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The discovery that palladium complexes possess a wide range of biological activities (from antitumor, -viral, -malarial, -fungal to antimicrobial activities) encourages further research in this scientific field. Herein we describe the synthesis and characterization of a novel palladium (II) complex, using [Pd(dien)Cl]Cl and 2-(azidomethyl)cyclopropane-1,1-dicarboxylic acid (azmcpda) as a ligand. [Pd(dien)Cl]Cl was selected as a starting material taking into consideration its importance as a model for the investigation of the substitution reactions in coordination chemistry and a deeper underst
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