Academic literature on the topic 'Heterometallic complexes'

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Journal articles on the topic "Heterometallic complexes"

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Krisyuk, Vladislav V., Samara Urkasym Kyzy, Tatyana V. Rybalova, Ilya V. Korolkov, Mariya A. Grebenkina та Alexander N. Lavrov. "Structure and Properties of Heterometallics Based on Lanthanides and Transition Metals with Methoxy-β-Diketonates". Molecules 27, № 23 (2022): 8400. http://dx.doi.org/10.3390/molecules27238400.

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The possibility of obtaining volatile polynuclear heterometallic complexes containing lanthanides and transition metals bound by methoxy-β-diketonates was studied. New compounds were prepared by cocrystallization of monometallic complexes from organic solvents. Ln(tmhd)3 were used as initial monometallic complexes (Ln = La, Pr, Sm, Gd, Tb, Dy, Lu; tmhd = 2,2,6,6-tetramethylheptane-3,5-dionate) in combination with TML2 in various ratios (TM = Cu, Co, Ni, Mn; L: L1 = 1,1,1-trifluoro-5,5-dimethoxypentane-2,4-dionate, L2 = 1,1,1-trifluoro-5,5-dimethoxy-hexane-2,4-dionate, L3 = 1,1,1-trifluoro-5-me
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Yang, Qianqian, and Jinkui Tang. "Heterometallic grids: synthetic strategies and recent advances." Dalton Transactions 48, no. 3 (2019): 769–78. http://dx.doi.org/10.1039/c8dt04243h.

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This article reviews the most up-to-date progress in heterometallic grid-like complexes and highlights the recent work in 3d–4f heterometallic grids, aiming at a better understanding of the self-assembly and magnetic properties of heterometallic grids.
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Sidorov, Alexey A., Mikhail A. Kiskin, Alexander E. Baranchikov, Vladimir K. Ivanov, and Igor L. Eremenko. "Methods for Synthesis of Molecular Materials with Unique Physical Properties." Vestnik RFFI, no. 2 (June 25, 2019): 82–100. http://dx.doi.org/10.22204/2410-4639-2019-102-02-82-100.

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The authors discovered and investigated new types of stable heterometallic carboxylate complexes in which divalent transition metal atoms of the 4th period of the Periodic Table of Chemical Elements (V, Co, Ni, Cu, Zn) combine with atoms of lithium, magnesium, calcium or rare earth elements. These polynuclear heterometallic compounds retain their structure under conditions when the homometallic compounds of these transition metals decompose to mononuclear complexes. The different metals combination in one molecule allows us to use the obtained heterometallic compounds for producing disperse an
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Fan, Qi-Jia, Yue-Jian Lin, F. Ekkehardt Hahn, and Guo-Xin Jin. "Host–guest capability of a three-dimensional heterometallic macrocycle." Dalton Transactions 47, no. 7 (2018): 2240–46. http://dx.doi.org/10.1039/c7dt04453d.

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Three-dimensional heterometallic macrocycles with half-sandwich Rh corners were studied for their ability to trap planar and non-planar guests. Furthermore, these heterometallic macrocycles can be destroyed in the presence of a soft base to form hexanuclear triangular prism complexes.
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Grechi, Cristian, Silvia Carlotto, Massimo Guelfi, Simona Samaritani, Lidia Armelao, and Luca Labella. "Sandwich d/f Heterometallic Complexes [(Ln(hfac)3)2M(acac)3] (Ln = La, Pr, Sm, Dy and M = Co; Ln = La and M = Ru)." Molecules 29, no. 16 (2024): 3927. http://dx.doi.org/10.3390/molecules29163927.

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Sandwich d/f heterometallic complexes [(Ln(hfac)3)2M(acac)3] (Ln = La, Pr, Sm, Dy and M = Co; Ln = La and M = Ru) were prepared in strictly anhydrous conditions reacting the formally unsaturated fragment [Ln(hfac)3] and [M(acac)3] in a 2-to-1 molar ratio. These heterometallic complexes are highly sensitive to moisture. Spectroscopic observation revealed that on hydrolysis, these compounds yield dinuclear heterometallic compounds [Ln(hfac)3M(acac)3], prepared here for comparison purposes only. Quantum mechanical calculations supported, on the one hand, the hypothesis on the geometrical arrangem
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Cheung, Wai-Man, Ka-Chun Au-Yeung, Kai-Hong Wong, et al. "Reactions of cerium complexes with transition metal nitrides: synthesis and structure of heterometallic cerium complexes containing bridging catecholate ligands." Dalton Transactions 48, no. 35 (2019): 13458–65. http://dx.doi.org/10.1039/c9dt02959a.

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Prosenc, Marc H., Manfred M. Kappes, and Gereon Niedner‐Schatteburg. "Cooperative Effects in Heterometallic Complexes." Chemistry – A European Journal 27, no. 61 (2021): 15019–20. http://dx.doi.org/10.1002/chem.202103666.

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Braunstein, Pierre, Ulli Englert, Gerhard E. Herberich, Mark Neuschütz, and Martin U. Schmidt. "Heterometallic complexes with borole ligands †‡." Journal of the Chemical Society, Dalton Transactions, no. 16 (1999): 2807–12. http://dx.doi.org/10.1039/a903846i.

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Mosquera, Marta, Julie Palmer, Alexander Hopkins, and Dominic Wright. "Heterometallic Complexes of Sn (II)." Phosphorus, Sulfur, and Silicon and the Related Elements 150, no. 1 (1999): 107–16. http://dx.doi.org/10.1080/10426509908037044.

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Mosquera, Marta E. G., Julie S. Palmer, Alexander D. Hopkins, and Dominic S. Wright. "Heterometallic Complexes of Sn(II)." Phosphorus, Sulfur, and Silicon and the Related Elements 150, no. 1 (1999): 107–16. http://dx.doi.org/10.1080/10426509908546375.

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Dissertations / Theses on the topic "Heterometallic complexes"

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Winpenny, R. E. P. "New heterometallic polynuclear complexes." Thesis, Imperial College London, 1988. http://hdl.handle.net/10044/1/47309.

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Tombul, Mustafa. "Towards heterometallic group 13 imido complexes." Thesis, University of Cambridge, 2001. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.620961.

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Khaled, Arwa M. "Heterometallic complexes with lactams and related ligands." Thesis, Imperial College London, 1991. http://hdl.handle.net/10044/1/46864.

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Robinson, Thomas Peter. "Homo- and heterometallic polyyne complexes : synthesis and characterisation." Thesis, University of Bath, 2013. https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.693327.

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The focus of this thesis is the development of conjugated homo- and heterometallic polyyne complexes for which the opto-electronic properties may be tuned to provide potential applications in molecular electronic devices.
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Domingo, Mark Russell. "Heterometallic complexes containing cobalt and chromium : synthesis, characterization and properties." Master's thesis, University of Cape Town, 1991. http://hdl.handle.net/11427/17284.

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Includes bibliographies.<br>Heterometallic transition metal complexes have been extensively studied and the synthesis and chemistry of many complexes of the type has been reported. This thesis focuses on heterometallic complexes containing cobalt and chromium.
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Stead, Matthew Laurence. "Synthesis and characterisation of heterometallic alkali metal/Sn(II) phosphinidene complexes." Thesis, University of Cambridge, 2009. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.611392.

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Sculfort, Sabrina. "D10 -d10 interactions in heterometallic molecular clusters." Strasbourg, 2009. http://www.theses.fr/2009STRA6226.

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La réactivité du métallate [MoCp(CO)3]− vis à vis de complexe de cuivre(I), d’argent(I) et d’or(I) a conduit à une série de complexes hétérométalliques anioniques de formule [M{MoCp(CO)3}2]−(M = Cu(I), Ag(I), et Au(I)). Ces complexes ont été caractérisés par diffraction des rayons X et utilisés comme précurseurs de clusters mixtes à coeurs métalliques hexa- ou octanucléaire pseudo-plans. Ces clusters oligomériques {M[m]}n (M = Cu, n = 3; M = Ag, Au, n = 4) possèdent le même métalloligand pontant [m] = CpMo(CO)3 et ont pu être synthétisés et caractérisés. Le coeur métallique du cluster [Cu3{MoC
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Kühnert, Janett. "Heterometallic Transition Metal Complexes based on 1- and 1,1’-functionalized Ferrocenyl Units." Doctoral thesis, Universitätsbibliothek Chemnitz, 2010. http://nbn-resolving.de/urn:nbn:de:bsz:ch1-201000547.

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The present thesis deals with the synthesis, the reaction behavior, the solid-state structures, as well as the electrochemical properties of new heterobi- to heterotetrametallic transition metal complexes which are based on various ferrocenyl carboxylates and titanocenes of type [Ti](C≡CSiMe<sub>3</sub>)<sub>2</sub> ([Ti] = (η<sup>5</sup>-C<sub>5</sub>H<sub>4</sub>SiMe<sub>3</sub>)<sub>2</sub>Ti). Besides, the synthesis and the reaction behavior of bi- to heptametallic compounds, which are available from fc(CO<sub>2</sub>H)(PPh<sub>2</sub>) (fc = (η<sup>5</sup>-C<sub>5</sub>H<sub>4</sub>)<sub
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Xu, Chaojie. "Molecular tectonics : heterometallic coordination networks based on chiral luminescent Ir(III) complexes." Thesis, Strasbourg, 2015. http://www.theses.fr/2015STRAF049/document.

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Les réseaux de coordination sont des architectures cristallines hybrides organiques-inorganiques pouvant présenter des propriétés découlant de leurs compositions et de leurs architectures. L’objectif de ce travail fut la synthèse de réseaux de coordination hétérométalliques à base de complexes d’Iridium (III) chiraux et luminescents.Dans un premier temps, la synthèse de nouveaux complexes d’Iridium cationiques bis-cyclométallés sous forme racémique et énantiopure a été réalisée avec succès. L'étude de leurs propriétés photophysiques a montré une émission dans le rouge par excitation dans le vi
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Castañeda-Perea, Luis Raúl. "Imidoyl Amidine Ligands: A Versatile Framework to Build Homo and Heterometallic Complexes." Thesis, Université d'Ottawa / University of Ottawa, 2020. http://hdl.handle.net/10393/40712.

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Ligand design in general enables the formation of coordination compounds with multiple functionalities within a single framework. To date, two of the most widely studied ligands are 2,2′:6′,2′′-terpyridine (terpy) and acetylacetone (acac), whose tridentate and bidentate coordination pockets, respectively, enables the formation of metallic complexes with various geometries. The Brusso group had been incorporating imidoyl amidine (ImAm) ligands to build different materials such as organic radicals and fluorescent materials. In particular, the ligands N-2-pyridylimidoyl-2-pyridylamidine (Py2ImAm)
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Books on the topic "Heterometallic complexes"

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Synthesis of Heterometallic Zinc-Gold and Lanthanide-Transition Metal Carbonyl Complexes and Reactivity Study of Pentaphosphaferrocene Towards Low-Valent Main Group Species. Cuvillier, 2019.

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Book chapters on the topic "Heterometallic complexes"

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Faulkner, Stephen, and Manuel Tropiano. "Heterometallic Complexes Containing Lanthanides." In Luminescence of Lanthanide Ions in Coordination Compounds and Nanomaterials. John Wiley & Sons Ltd, 2014. http://dx.doi.org/10.1002/9781118682760.ch09.

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Curado, Natalia, and Maria Contel. "CHAPTER 6. Heterometallic Complexes as Anticancer Agents." In Metal-based Anticancer Agents. Royal Society of Chemistry, 2019. http://dx.doi.org/10.1039/9781788016452-00143.

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Saysell, D. M., M. N. Sokolov, and A. G. Sykes. "Heterometallic Cuboidal Complexes as Derivatives of [Mo3S4(H2O)9]4+." In ACS Symposium Series. American Chemical Society, 1996. http://dx.doi.org/10.1021/bk-1996-0653.ch012.

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Shapley, Patricia A. "Oxidation of Organic Molecules with Molecular Oxygen Catalyzed by Heterometallic Complexes." In ACS Symposium Series. American Chemical Society, 2004. http://dx.doi.org/10.1021/bk-2004-0885.ch022.

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Lalia-Kantouri, M., and D. M. L. Goodgame. "Laser-Raman Spectroscopy of Some Lanthanide/Hgl2 Heterometallic Complexes (HL=5,7-Dimethyl-1,8-Naphthyridine-2-OL)." In Application of Particle and Laser Beams in Materials Technology. Springer Netherlands, 1995. http://dx.doi.org/10.1007/978-94-015-8459-3_18.

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Endo, Kenichi. "Heterometallic CoIINiII3 Complex." In Kinetically Controlled Stepwise Syntheses of a Heterometallic Complex and a Tetrahedral Chiral-at-Metal Complex. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-1163-6_2.

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Endo, Kenichi. "Conclusions." In Kinetically Controlled Stepwise Syntheses of a Heterometallic Complex and a Tetrahedral Chiral-at-Metal Complex. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-1163-6_4.

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Endo, Kenichi. "General Introduction." In Kinetically Controlled Stepwise Syntheses of a Heterometallic Complex and a Tetrahedral Chiral-at-Metal Complex. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-1163-6_1.

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Endo, Kenichi. "Tetrahedral Chiral-at-Metal ZnII Complex." In Kinetically Controlled Stepwise Syntheses of a Heterometallic Complex and a Tetrahedral Chiral-at-Metal Complex. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-1163-6_3.

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Kokozay, Vladimir N., Olga Yu Vassilyeva, and Valeriya G. Makhankova. "Direct Synthesis of Heterometallic Complexes." In Direct Synthesis of Metal Complexes. Elsevier, 2018. http://dx.doi.org/10.1016/b978-0-12-811061-4.00005-0.

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Conference papers on the topic "Heterometallic complexes"

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Soldatovic, Tanja. "Novel perspective of anticancer metal-based drugs: Characteristics of heterometallic complexes and their potential applications." In 7th International Electronic Conference on Medicinal Chemistry. MDPI, 2021. http://dx.doi.org/10.3390/ecmc2021-11378.

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Osadchuk, Oleksandr, Volodymyr Martyniuk, Olena Semenova, Andriy Semenov, Halyna Martyniuk, and Tetiana Sydoruk. "Physical Parameters of the Synthesized Semiconductor Material Based on a Heterometallic Complex Compound of Copper (II) with N, N'-Bis(Salicylidene)Semicarbazide." In 2022 IEEE 16th International Conference on Advanced Trends in Radioelectronics, Telecommunications and Computer Engineering (TCSET). IEEE, 2022. http://dx.doi.org/10.1109/tcset55632.2022.9766980.

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Reports on the topic "Heterometallic complexes"

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Verani, Claudio. SISGR - A CONCERTED SYNTHETIC, SPECTROSCOPIC, AND COMPUTATIONAL APPROACH TOWARDS WATER SPLITTING BY HETEROMETALLIC COMPLEXES IN SOLUTION AND ON SURFACES. Office of Scientific and Technical Information (OSTI), 2017. http://dx.doi.org/10.2172/1379487.

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