首页> 外文OA文献 >A class of luminescent cyclometalated alkynylgold(III) complexes: synthesis, characterization, and electrochemical, photophysical, and computational studies of [Au(C^N^C)(C≡C-R)] (C^N^C = κ(3)C,N,C bis-cyclometalated 2,6-diphenylpyridyl)
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A class of luminescent cyclometalated alkynylgold(III) complexes: synthesis, characterization, and electrochemical, photophysical, and computational studies of [Au(C^N^C)(C≡C-R)] (C^N^C = κ(3)C,N,C bis-cyclometalated 2,6-diphenylpyridyl)

机译:一类发光的环金属化炔基金(III)配合物:[au(C ^ N ^ C)(C≡CR)]的合成,表征和电化学,光物理和计算研究(C ^ N ^ C =κ(3) C,N,C双环金属化2,6-二苯基吡啶基)

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摘要

A new class of luminescent cyclometalated alkynylgold(III) complexes, [Au(RC^N(R')^CR)(C≡CR'')], i.e., [Au(C^N^C)(C≡CR'')] (HC^N^CH = 2,6-diphenylpyridine) R'' = C6H5 1, C6H4-Cl-p 2, C6H4-NO2-p 3, C6H4-OCH3-p 4, C6H4-NH2-p 5, C6H4-C6H13-p 6, C6H13 7, [Au(tBuC^N^CtBu)(C≡CC6H5)] 8 (HtBuC^N^CtBuH = 2,6-bis(4-tert-butylphenyl)pyridine), and [Au(C^NTol^C)(C≡CC6H4-C6H13-p)] 9 (HC^NTol^CH = 2,6-diphenyl-4-p-tolylpyridine), have been synthesized and characterized. The X-ray crystal structures of most of the complexes have also been determined. Electrochemical studies show that, in general, the first oxidation wave is an alkynyl ligand-centered oxidation, while the first reduction couple is ascribed to a ligand-centered reduction of the cyclometalated ligand with the exception of 3 in which the first reduction couple is assigned as an alkynyl ligand-centered reduction. Their electronic absorption and luminescence behaviors have also been investigated. In dichloromethane solution at room temperature, the low-energy absorption bands are assigned as the π-π* intraligand (IL) transition of the cyclometalated RC^N(R')^CR ligand with some mixing of a [π(C≡CR'') -> π*(RC^N(R')^CR)] ligand-to-ligand charge transfer (LLCT) character. The low-energy emission bands of all the complexes, with the exception of 5, are ascribed to origins mainly derived from the π-π* IL transition of the cyclometalated RC^N(R')^CR ligand. In the case of 5 that contains an electron-rich amino substituent on the alkynyl ligand, the low-energy emission band was found to show an obvious shift to the red. A change in the origin of emission is evident, and the emission of 5 is tentatively ascribed to a [π(C≡CC6H4NH2) -> π*(C^N^C)] LLCT excited-state origin. DFT and TDDFT computational studies have been performed to verify and elucidate the results of the electrochemical and photophysical studies.
机译:一种新型的发光环金属化炔金(III)配合物,[Au(RC ^ N(R')^ CR)(C≡CR'')],即[Au(C ^ N ^ C)(C≡CR' ')](HC ^ N ^ CH = 2,6-二苯基吡啶)R''= C6H5 1,C6H4-Cl-p 2,C6H4-NO2-p 3,C6H4-OCH3-p 4,C6H4-NH2-p 5 ,C6H4-C6H13-p 6,C6H13 7,[Au(tBuC ^ N ^ CtBu)(C≡CC6H5)] 8(HtBuC ^ N ^ CtBuH = 2,6-双(4-叔丁基苯基)吡啶)和[Au(C ^ NTol ^ C)(C≡CC6H4-C6H13-p)] 9(HC ^ NTol ^ CH = 2,6-二苯基-4-对甲苯基吡啶)已经合成并表征。大多数配合物的X射线晶体结构也已经确定。电化学研究表明,一般而言,第一个氧化波是一个以炔基配体为中心的氧化,而第一个还原对归因于环金属化配体的一个以配体为中心的还原,但其中3个是第一个还原对作为以炔基配体为中心的还原。还研究了它们的电子吸收和发光行为。在室温下的二氯甲烷溶液中,将低能吸收带指定为环金属化的RC ^ N(R')^ CR配体与[π(C≡CR '')->π*(RC ^ N(R')^ CR)]配体到配体的电荷转移(LLCT)特征。除5以外的所有配合物的低能发射带均归因于主要源自环金属化的RC ^ N(R')^ CR配体的π-π* IL跃迁。在5的炔基配体上含有一个富电子的氨基取代基的情况下,发现低能发射带显示出明显的向红色的转变。发射起点的变化很明显,发射5暂时归因于[π(C≡CC6H4NH2)->π*(C ^ N ^ C)] LLCT激发态的起源。已经进行了DFT和TDDFT计算研究,以验证和阐明电化学和光物理研究的结果。

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