Chakkaradhari Gomathy, Belyaev Andrey A, Karttunen Antti J, Sivchik Vasily, Tunik Sergey P, Koshevoy Igor O
University of Eastern Finland, Department of Chemistry, 80101, Joensuu, Finland.
Dalton Trans. 2015 Aug 7;44(29):13294-304. doi: 10.1039/c5dt01870f.
A rigid triphosphine PPh2C6H4-PPh-C6H4PPh2 () reacted with Cu(+) and a stoichiometric amount of terminal alkyne under basic conditions to give a family of copper(i) alkynyl compounds [Cu()C[triple bond, length as m-dash]CR]. The number of terminal -C[triple bond, length as m-dash]CH groups in the starting ligand determines the nuclearity of the resulting complexes giving mono- (, R = Ph; , R = C6H4OMe; , R = C6H4NO2; , R = C6H4CF3; , R = 2-pyridyl), di- (R = -(C6H4)n-, n = 1 (), n = 2, (), n = 3 ()) and trinuclear complexes (, R = 1,3,5-(C6H4)3-C6H3; , R = 1,3,5-(C6H4-4-C2C6H4)3-C6H3). In all the complexes the Cu(i) centers are found in a distorted tetrahedral environment that is achieved by tridentate coordination of the ligand and σ-bonding to the alkynyl function. The crystal structures of , and were estimated by single crystal X-ray diffraction analysis. The (31)P, (1)H and (1)H-(1)H COSY NMR spectroscopy confirms that all the molecules remain intact in solution. The photophysical studies carried out in the solid state at 298 and 77 K revealed moderate to weak orange luminescence (Φem up to 19%), tentatively assigned to thermally activated delayed fluorescence for the mononuclear complexes. The quantum yields of emission of demonstrated strong dependence on the nature of the alkynyl ligand, the role of which in the electronic transitions was elucidated by TD-DFT computational studies.
一种刚性三膦PPh2C6H4 - PPh - C6H4PPh2()在碱性条件下与Cu(+)及化学计量的端基炔烃反应,生成一系列铜(Ⅰ)炔基化合物[Cu()C≡CR]。起始配体中端基 - C≡CH基团的数量决定了所得配合物的核数,生成单核(,R = Ph;,R = C6H4OMe;,R = C6H4NO2;,R = C6H4CF3;,R = 2 - 吡啶基)、双核(R = - (C6H4)n - ,n = 1(),n = 2(),n = 3())和三核配合物(,R = 1,3,5 - (C6H4)3 - C6H3;,R = 1,3,5 - (C6H4 - 4 - C2C6H4)3 - C6H3)。在所有配合物中,Cu(Ⅰ)中心处于扭曲的四面体环境中,这是通过配体的三齿配位和与炔基官能团的σ键合实现的。通过单晶X射线衍射分析确定了、和的晶体结构。(31)P、(1)H和(1)H - (1)H COSY核磁共振光谱证实所有分子在溶液中保持完整。在298 K和77 K固态下进行的光物理研究表明,有中度至弱的橙色发光(Φem高达19%),初步认为单核配合物的这种发光归因于热激活延迟荧光。的发射量子产率强烈依赖于炔基配体的性质,TD - DFT计算研究阐明了其在电子跃迁中的作用。