Facile reductive excision of sulfur from a {Pt2S2} core in [Pt2(PPh3)4(μ-S)2] to a {Pt2S} triangle by carbon monoxide
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Biochemistry
Reference40 articles.
1. Zerovalent platinum chemistry. Part VI. The reactions of bis- and tris-triphenylphosphineplatinum(0) with hydrogen sulphide, hydrogen selenide, sulphur, and related molecules
2. X-Ray photoelectron spectroscopic characterization of [{Pt(PPh3)2(µ3-S)}2PtCl2], [{Pt2(PPh3)4(µ3-S)2Cu}2(µ-dppf)][PF6]2[dppf = Fe (C5H4PPh2)2] and other heterometallic aggregates derived from [{Pt(PPh3)2(µ-S)}2]
3. On the nucleophilicity of the sulphur bridges in di-μ-sulphido-tetrakis(triphenylphosphine)-diplatinum(II)
4. XPS studies of some heterometallic complexes of Pt with bridging sulphido
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1. Discovery of Polythioplatinate(II) [Pt3S2(SO3)6]10– and Study of Its Solution and Catalytic Properties;Inorganic Chemistry;2022-07-22
2. Reactivity of a Nickel Sulfide with Carbon Monoxide and Nitric Oxide;Journal of the American Chemical Society;2016-09-14
3. An investigation of the mixed-bridge dinuclear complex [Pt2(μ-S)(μ-NH2)(PPh3)4]+;Inorganica Chimica Acta;2014-05
4. Crystal structure of [Pt3S2(P(CH2OH)3)6](PF6)(OH)·H2O;Journal of Structural Chemistry;2013-05
5. A novel structural rearrangement reaction of dialkylated derivatives of [Pt2(μ-S)2(PPh3)4] involving Pt–C bond formation;Dalton Transactions;2012
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