Unequal coordination environment in complexes of the type [Au2Ag2(R)4(L)2]n. An immiscible solvent mixture as a key point in the control of ligand replacement
Author:
Affiliation:
1. Departamento de Química
2. Universidad de La Rioja
3. Centro de Investigación en Síntesis Química (CISQ)
4. Complejo Científico-Tecnológico
5. 26004-Logroño
Abstract
A new photoluminescent heterometallic polymer [Au6Ag6(C6Cl2F3)12(μ2-pym)2(NCMe)6]n (2) with three different coordination environments has been synthesised.
Funder
Secretaría de Estado de Investigación Desarrollo e Innovación
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2018/DT/C8DT00024G
Reference40 articles.
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2. Cyclic Triradicals Composed of Iminonitroxide-Gold(I) with Intramolecular Ferromagnetic Interactions
3. Metallophilicity-Driven Dynamic Aggregation of a Phosphorescent Gold(I)–Silver(I) Cluster Prepared by Solution-Based and Mechanochemical Approaches
4. Luminescent Chains Formed from Neutral, Triangular Gold Complexes Sandwiching TlI and AgI. Structures of {Ag([Au(μ-C2,N3-bzim)]3)2}BF4·CH2Cl2, {Tl([Au(μ-C2,N3-bzim)]3)2}PF6·0.5THF (bzim = 1-Benzylimidazolate), and {Tl([Au(μ-C(OEt)═NC6H4CH3)]3)2}PF6·THF, with MAu6 (M = Ag+, Tl+) Cluster Cores
5. Triple-Decker Au3-Ag-Au3-Ag-Au3Ion Cluster Enclosed in a Self-Assembled Cage
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