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Synthesis and Photophysical Properties of T-Shaped Coinage-Metal Complexes.


ABSTRACT: The photophysical properties of a series of T-shaped coinage d10 metal complexes, supported by a bis(mesoionic carbene)carbazolide (CNC) pincer ligand, are explored. The series includes a rare new example of a tridentate T-shaped AgI complex. Post-complexation modification of the AuI complex provides access to a linear cationic AuI complex following ligand alkylation, or the first example of a cationic square planar AuIII -F complex from electrophilic attack on the metal centre. Emissions ranging from blue (CuI ) to orange (AgI ) are obtained, with variable contributions of thermally-dependent fluorescence and phosphorescence to the observed photoluminescence. Green emissions are observed for all three gold complexes (neutral T-shaped AuI , cationic linear AuI and square planar cationic AuIII ). The higher quantum yield and longer decay lifetime of the linear gold(I) complex are indicative of increased phosphorescence contribution.

SUBMITTER: Kleinhans G 

PROVIDER: S-EPMC7317956 | biostudies-literature | 2020 Jun

REPOSITORIES: biostudies-literature

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Synthesis and Photophysical Properties of T-Shaped Coinage-Metal Complexes.

Kleinhans George G   Chan Alan K-W AK   Leung Ming-Yi MY   Liles David C DC   Fernandes Manuel A MA   Yam Vivian W-W VW   Fernández Israel I   Bezuidenhout Daniela I DI  

Chemistry (Weinheim an der Bergstrasse, Germany) 20200515 31


The photophysical properties of a series of T-shaped coinage d<sup>10</sup> metal complexes, supported by a bis(mesoionic carbene)carbazolide (CNC) pincer ligand, are explored. The series includes a rare new example of a tridentate T-shaped Ag<sup>I</sup> complex. Post-complexation modification of the Au<sup>I</sup> complex provides access to a linear cationic Au<sup>I</sup> complex following ligand alkylation, or the first example of a cationic square planar Au<sup>III</sup> -F complex from ele  ...[more]

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