Synthesis of (C^N, S^S)-cyclometallated phosphonodithiolate gold(III) complexes

IF 2.6 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR Polyhedron Pub Date : 2025-02-01 DOI:10.1016/j.poly.2024.117363
Paula Pérez-Ramos, David Elorriaga, Daniel García-Vivó, Salomé López, Raquel G. Soengas, Humberto Rodríguez-Solla
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Abstract

Herein we report the complexation of gold(III) with chalcogenophosphorous ligands derived from Lawesson’s reagent (LR). The reaction of Lawesson’s reagent with (ppy)AuCl2 (ppy = 2-phenylpyridine) led to the novel [Au(ppy){S2P(O)(p-MeO-C6H4)] complexes 4, resulting from the demethylation of the expected [Au(ppy){S2P(MeO)(p-MeO-C6H4)]+ complexes. The novel gold(III) phosphonodithiolate complexes have been studied by HRMS, multinuclear NMR and X-ray crystallography. To the best of our knowledge this is the first reported synthesis of phosphonodithiolate gold(III) complexes of LR and provides a valuable addition to the few examples of gold complexes containing organophosphorus-chalcogen ligands.

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(C^N, S^S)-环金属化膦二硫代金配合物的合成
本文报道了金(III)与从Lawesson试剂(LR)中衍生的硫磷配体的络合。Lawesson试剂与(ppy)AuCl2 (ppy = 2-苯基吡啶)反应生成了新的[Au(ppy){S2P(O)(p-MeO-C6H4)]配合物4,这是由于预期的[Au(ppy){S2P(MeO)(p-MeO-C6H4)]+配合物的去甲基化所致。利用HRMS、多核磁共振和x射线晶体学对新型膦硫代金配合物进行了研究。据我们所知,这是首次报道的磷酸二硫酸金(III)配合物的合成,并为含有有机磷-硫配体的金配合物提供了有价值的补充。
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来源期刊
Polyhedron
Polyhedron 化学-晶体学
CiteScore
4.90
自引率
7.70%
发文量
515
审稿时长
2 months
期刊介绍: Polyhedron publishes original, fundamental, experimental and theoretical work of the highest quality in all the major areas of inorganic chemistry. This includes synthetic chemistry, coordination chemistry, organometallic chemistry, bioinorganic chemistry, and solid-state and materials chemistry. Papers should be significant pieces of work, and all new compounds must be appropriately characterized. The inclusion of single-crystal X-ray structural data is strongly encouraged, but papers reporting only the X-ray structure determination of a single compound will usually not be considered. Papers on solid-state or materials chemistry will be expected to have a significant molecular chemistry component (such as the synthesis and characterization of the molecular precursors and/or a systematic study of the use of different precursors or reaction conditions) or demonstrate a cutting-edge application (for example inorganic materials for energy applications). Papers dealing only with stability constants are not considered.
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