Molecular Aggregation of Annular Dinuclear Gold(I) Compounds Containing Bridging Diphosphine and Dithiolate Ligands
Author:
Affiliation:
1. Departments of Chemistry, Fu-Jen Catholic University, Hsinchuang, Taipei 242, Taiwan, ROC, and Soochow University, Taipei 111, Taiwan, ROC
Publisher
American Chemical Society (ACS)
Subject
Inorganic Chemistry,Physical and Theoretical Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/ic9607245
Reference46 articles.
1. Binuclear and polymeric gold(I) complexes
2. Synthesis of gold(I), gold(III), and silver(I) complexes with ylide ligands derived from carbonylbis(methylenetriphenylphosphonium)diperclorate. Crystal and molecular structures of [Au2{.mu.-{{CH(PPh3)}2CO}}2](ClO4)2, [(Ph3PCCl2)2CO][AuCl4](ClO4), [(AuL)2{.mu.-{C(PPh3)C(O)CH(PPh3)(AuL)}}](ClO4)2 (L = PPh3), and [{Au(PMe2Ph)}4{.mu.-{{C(PPh3)}2CO}}](ClO4)2
3. Syntheses of dinuclear gold(I) ring complexes containing 1,1-dicyanoethene-2,2-dithiolate-S, S and bis(diphosphines) as bridging ligands. X-ray crystal structure of [Au2μ-(i-MNT)μ-(dppee)]
4. Syntheses of dinuclear gold(I) ring complexes containing two different bridging ligands. Crystal structure of [Au2{µ-(CH2)2PPh2}(µ-S2CNEt2)]
5. Relativity and the periodic system of elements
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