In Situ Synthesis of Hexadentate Cyclometalated Ir(III) Complexes as Photocatalysts for the Oxidation of Sulfides into Sulfoxides in Water

Jing-Yan Fan, Su-Yang Yao, Baohui Ye
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Abstract

The aerobic photooxidation of sulfides into sulfoxides in eco-friendly solvents, notably water, at room temperature, represents a significant interest in the domain of synthetic chemistry. This study introduces four highly stable hexadentate Ir(III) complexes: [Ir(fpqen)](PF6) (1), [Ir(btqen)](PF6) (2), [Ir(bmpqen)](PF6) (3), and [Ir(bnqen](PF6) (4) (where bfpqen is N,N′-bis(2-(4-fluorophenyl)quinolin-8-yl)ethane-1,2-diamine, btqen is N,N′-bis(2-(4-tolyl)quinolin-8-yl)ethane-1,2-diamine, bmpqen is N,N′-bis(2-(4-methoxyphenyl)quinolin-8-yl)ethane-1,2-diamine, and bnqen is N,N′-bis(2-naphthylquinolin-8-yl)ethane-1,2-diamine). These complexes were synthesized utilizing an in situ inter-ligand C-N cross-coupling photoreaction of the precursors [Ir(L)2(en)](PF6) (L is 2-(4-fluorophenyl)quinoline, (2-(4-tolyl)quinoline, 2-(4-methoxyphenyl)quinoline or 2-naphthylquinoline, and en is 1,2-diamine) under benign conditions. This methodology furnishes a valuable and complementary approach for the in situ generation of multidentate complexes through a post-coordination inter-ligand-coupling strategy under mild conditions. Moreover, these hexadentate Ir(III) complexes exhibit pronounced catalytic activity and chemo-selectivity toward the aerobic photooxidations of sulfides into sulfoxides in aqueous media at room temperature, offering a new avenue for the sustainable synthesis of sulfoxides.
原位合成六价环金属化铱(III)配合物作为光催化剂将水中的硫化物氧化成硫醚
在室温下,硫化物在环保溶剂(尤其是水)中发生有氧光氧化反应生成硫氧化物,是合成化学领域的一个重要课题。本研究介绍了四种高度稳定的六价铁(III)配合物:[其中 bfpqen 是 N,N′-双(2-(4-氟苯基)喹啉-8-基)乙烷-1,2-二胺,btqen 是 N.N′-双(2-(4-氟苯基)喹啉-8-基)乙烷-1,2-二胺、N,N′-双(2-(4-甲苯基)喹啉-8-基)乙烷-1,2-二胺,bmpqen 是 N,N′-双(2-(4-甲氧基苯基)喹啉-8-基)乙烷-1,2-二胺,bnqen 是 N,N′-双(2-萘基喹啉-8-基)乙烷-1,2-二胺)。这些配合物是利用前体[Ir(L)2(en)](PF6)(L 为 2-(4-氟苯基)喹啉、(2-(4-甲苯基)喹啉、2-(4-甲氧基苯基)喹啉或 2-萘基喹啉,en 为 1,2-二胺)的原位配体间 C-N 交叉偶联光反应在良性条件下合成的。这种方法为在温和条件下通过配位后配体间偶联策略原位生成多齿配合物提供了一种宝贵的补充方法。此外,这些六价铱(III)配合物在室温水介质中将硫化物有氧光氧化成硫醚的过程中表现出明显的催化活性和化学选择性,为硫醚的可持续合成提供了一条新途径。
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