首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Application of neutral d~(10) coinage metal complexes with an anionic bidentate ligand in delayed fluorescence-type organic light-emitting diodes
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Application of neutral d~(10) coinage metal complexes with an anionic bidentate ligand in delayed fluorescence-type organic light-emitting diodes

机译:阴离子双齿配体的中性d〜(10)造币金属络合物在延迟荧光型有机发光二极管中的应用

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A series of heteroleptic coinage metal(I) complexes [Cu(PP){PS)] 1, [Ag(PP)(PS)] 2, and [Au(PP)(PS)] 3 [PP = 1,2-bis(diphenylphosphino)benzene and PS~- = 2-diphenylphosphinobenzenethiolate] were synthesized. X-ray crystallography demonstrated that 1-3 possessed tetrahedral structures containing two types of bidentate ligands, PP and PS~. Photophysical studies and time-dependent density functional theory calculations indicated that the emission from 1-3 in the solid state at room temperature originated from thermally activated delayed fluorescence (TADF). The thiolate ligand with strong electron-donating character (PS~-) reduced the contribution from metal orbitals to the highest occupied molecular orbitals of the complexes, decreasing the metal-to-ligand charge-transfer character of the excited states of 1-3. The origin of TADF in 1-3 was attributed to ligand-to-ligand charge-transfer on the basis of molecular orbital calculations. Au(I) complex 3 was unstable in solution because of a rapid ligand exchange reaction, and Ag(I) complex 2 showed limited solubility in organic solvents. Cu(I) complex 1, which exhibited efficient green TADF with a maximum emission wavelength of 521 nm and a quantum yield of 0.52 in the solid state, was used to fabricate TADF-type organic light-emitting diodes via a wet process.
机译:一系列杂合造币金属(I)配合物[Cu(PP){PS)] 1,[Ag(PP)(PS)] 2和[Au(PP)(PS)] 3 [PP = 1,2-合成了双(二苯基膦基)苯和PS-(= 2-二苯基膦基苯硫基)。 X射线晶体学表明1-3具有四面体结构,其包含两种类型的双齿配体PP和PS。光物理研究和随时间变化的密度泛函理论计算表明,室温下固态下1-3的发射源于热激活延迟荧光(TADF)。具有强电子给体特性(PS〜-)的硫醇盐配体减少了金属轨道对配合物最高占据分子轨道的贡献,降低了1-3激发态的金属到配体的电荷转移特性。根据分子轨道计算,TADF的起源可归因于1-3配体间的电荷转移。由于快速的配体交换反应,Au(I)配合物3在溶液中不稳定,而Ag(I)配合物2在有机溶剂中的溶解度有限。使用具有最大发射波长为521 nm的有效绿色TADF且固态量子产率为0.52的Cu(I)络合物1,通过湿法工艺制造了TADF型有机发光二极管。

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