首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Influence of primary and auxiliary ligand on spectroscopic properties and luminescent efficiency of organoplatinum(II) complexes bearing functionalized cyclometalated C^N^C ligands
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Influence of primary and auxiliary ligand on spectroscopic properties and luminescent efficiency of organoplatinum(II) complexes bearing functionalized cyclometalated C^N^C ligands

机译:主配体和辅助配体对带有功能化环金属化C ^ N ^ C配体的有机铂(II)配合物的光谱性质和发光效率的影响

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摘要

A theoretical investigation into eighteen recently synthesized Pt(II) complexes [(R1~n–C^N^C–R2~n)Pt(L)] with doubly deprotonated cyclometalated R1~n–C^N^C–R2~n ligands (n = 1–9, R1~n–C^N^C–R2~n = 2,6- diphenylpyridine derivatives) and L ligands (L = DMSO, 1–9; L = –CuN–Ar, 1a–9a), which are used as emitters in orange-red emitting diodes, is reported in this paper. Geometric and electronic structures, absorption and emission spectra, phosphorescence quantum yields, and electroluminescence (EL) efficiency were investigated by DFT and TDDFT methods. We focused on the influence of the primary ligand (R1~n–C^N^C–R2~n) and auxiliary ligand (L) on the optical and electronic properties of Pt(II) complexes by introducing carbazole, fluorene, and thiophene group in the primary ligand and/or the replacement of DMSO by –C≡N–Ar as an ancillary ligand. The incorporation of carbazole, fluorene, and thiophene into the primary ligand caused the red-shift of absorption and emission spectra. The metal–ligand bond length is contracted where –C≡N–Ar was employed as the secondary ligand, which facilitate the metal to ligand charge transfer (MLCT). The larger involvement of MLCT character in emission process is beneficial for improving the quantum yields of 2a–9a. For EL efficiency, all the complexes have a good balance of reorganization energy as potential systems for fabricating effective OLEDs devices except for 1 and 1a. In addition, two new molecules were designed with comparable or better EL efficiency.
机译:对18个最近合成的Pt(II)配合物[(R1〜n–C ^ N ^ C–R2〜n)Pt(L)]进行双去质子化的环金属化R1〜n–C ^ N ^ C–R2〜n的理论研究配体(n = 1–9,R1〜n–C ^ N ^ C–R2〜n = 2,6-二苯基吡啶衍生物)和L配体(L = DMSO,1–9; L = –CuN–Ar,1a–本文报道了在橙红色发光二极管中用作发射极的9a)。通过DFT和TDDFT方法研究了几何和电子结构,吸收和发射光谱,磷光量子产率和电致发光(EL)效率。我们通过引入咔唑,芴和噻吩,重点研究了主要配体(R1〜n–C ^ N ^ C–R2〜n)和辅助配体(L)对Pt(II)配合物的光学和电子性质的影响基配体和/或用–C≡N–Ar替代DMSO作为辅助配体。咔唑,芴和噻吩并入主要配体中导致吸收光谱和发射光谱发生红移。在使用–C≡N–Ar作为二级配体的情况下,金属-配体的键长会收缩,这有助于金属向配体的电荷转移(MLCT)。 MLCT特性在发射过程中的更大参与有利于提高2a–9a的量子产率。为了提高EL效率,除1a和1a以外,所有配合物均具有良好的重组能量平衡,可作为制造有效OLED器件的潜在系统。另外,设计了两种具有可比或更好的EL效率的新分子。

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