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201138

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A polymer-supported iridium catalyst for the stereoselective isomerisation of double bonds
Baxendale IR, et al.
Synlett, 2002(03), 0516-0518 (2002)
Electronic absorption and emission spectral studies of square-planar Rhodium (I) and Iridium (I) complexes. Evidence for a charge-transfer emitting state
Geoffroy GL, et al.
Journal of the American Chemical Society, 96(10), 3105-3108 (1974)
Preparations of iridium complexes containing phenanthroline ancillary ligands and electrical properties of cationic iridium-based light-emitting electrochemical cells
Park S, et al.
Surface and Interface Analysis : SIA, 44(11-12), 1479-1482 (2012)
Eduardo Guimarães Ratier de Arruda et al.
Dalton transactions (Cambridge, England : 2003), 48(9), 2900-2916 (2018-11-22)
A systematic study of the influence of the first coordination sphere over the reactivity and structure of metallo-β-lactamase (MβL) monozinc model complexes is reported. Three ZnII complexes with tripodal ligands forming the series [Zn(N-NNN)], [Zn(N-NNS)], and [Zn(N-NNO)] where N-NNX represents
Preparation, crystal structures and spectroscopic properties of chloro (pentane-2, 4-dionato){1, 1, 1-tris (dimethylphosphinomethyl) ethane}chromium (III), cobalt (III) and rhodium (III) hexafluorophosphate: comparison of the M-P, M-Cl and M-O (M= Cr, Co a
Suzuki T, et al.
Polyhedron, 21(8), 835-841 (2002)
A simple and efficient one-step protocol for the preparation of alkyl-substituted ammonium tetrafluoroborate and hexafluorophosphate salts
Saba Shahrokh, et al.
Journal of Fluorine Chemistry, 153, 168-171 (2013)
Masaru Yao et al.
Scientific reports, 5, 10962-10962 (2015-06-05)
Is it possible to exceed the lithium redox potential in electrochemical systems? It seems impossible to exceed the lithium potential because the redox potential of the elemental lithium is the lowest among all the elements, which contributes to the high
Ammonium Hexafluorophosphate as a Flame Retardant for Cellulose.
Mohamed, K Syed and Padma, DK
Journal of fire sciences, 5(1), 17-24 (1987)
Accelerated luminophore discovery through combinatorial synthesis.
Lowry, Michael S et al.
Journal of the American Chemical Society, 126(43), 14129-14135 (2004)
Anil K Gorle et al.
Chemistry (Weinheim an der Bergstrasse, Germany), 21(29), 10472-10481 (2015-06-05)
Ruthenium(II) complexes containing the tetradentate ligand bis[4(4'-methyl-2,2'-bipyridyl)]-1,n-alkane ("bbn "; n=10 and 12) have been synthesised and their geometric isomers separated. All [Ru(phen)(bbn )](2+) (phen=1,10-phenanthroline) complexes exhibited excellent activity against Gram-positive bacteria, but only the cis-α-[Ru(phen)(bb12 )](2+) species showed good activity
Anil K Gorle et al.
Dalton transactions (Cambridge, England : 2003), 43(44), 16713-16725 (2014-10-02)
A series of inert tri- and tetra-nuclear polypyridylruthenium(II) complexes that are linked by the bis[4(4'-methyl-2,2'-bipyridyl)]-1,n-alkane ligand ("bb(n)" for n = 10, 12 and 16) have been synthesised and their potential as antimicrobial agents examined. Due to the modular nature of
Homogeneous catalytic system for photoinduced hydrogen production utilizing iridium and rhodium complexes.
Cline, Eric D et al.
Inorganic Chemistry, 47(22), 10378-10388 (2008)
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