2016
DOI: 10.1002/ejic.201600898
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ZnII and CdII Ferrocenechalcogenolate Complexes

Abstract: Abstract:The preparation of the ferrocene-based reagents

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Cited by 2 publications
(3 citation statements)
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References 32 publications
(35 reference statements)
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“…Four cadmium atoms (Cd3, Cd2 and symmetry equivalent atoms) bind to sulfur atoms only, while three cadmium atoms (Cd1) bind to three sulfur atoms and one i Pr 3 P ligand. The Cd-P distance (262(2) pm) is in the same range as observed for phosphine stabilized cadmium thiolate complexes [9,10,62]. Six tin atoms are located in the outer sphere of the CdS core which are coordinated by two sulfur atoms and two phenyl groups.…”
Section: Bond Lengthssupporting
confidence: 58%
“…Four cadmium atoms (Cd3, Cd2 and symmetry equivalent atoms) bind to sulfur atoms only, while three cadmium atoms (Cd1) bind to three sulfur atoms and one i Pr 3 P ligand. The Cd-P distance (262(2) pm) is in the same range as observed for phosphine stabilized cadmium thiolate complexes [9,10,62]. Six tin atoms are located in the outer sphere of the CdS core which are coordinated by two sulfur atoms and two phenyl groups.…”
Section: Bond Lengthssupporting
confidence: 58%
“…The reactivity of metal acetates with silylchalcogens has been used extensively to yield small complexes and clusters of zinc , , . Syntheses of ligand stabilized mononuclear zinc complexes with [ESiMe 3 ] – (E = S, Se, Te) are straightforward with zinc acetate and the corresponding E(SiMe 3 ) 2 with tetramethylethylenediamine or lutidine as stabilizing ligands .…”
Section: Resultsmentioning
confidence: 99%
“…The reactivity of metal acetates with silylchalcogens has been used extensively to yield small complexes and clusters of zinc. [33,40,41] Syntheses of ligand stabilized mononuclear zinc complexes with [ESiMe 3 ] -(E = S, Se, Te) are straightforward with zinc acetate and the corresponding E(SiMe 3 ) 2 with tetramethylethylenediamine or lutidine as stabilizing ligands. [40] When the analogous reaction was carried out with Me 3 SiPPh 2 [Zn(OAc) 2 :Me 3 SiPPh 2 = 1:2], the reaction consistently produced a highly insoluble white powder regardless of the solvents used (DCM, THF, MeCN, CHCl 3 ).…”
Section: Resultsmentioning
confidence: 99%