首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Essential Role of Ancillary Ligand in Color Tuning and Quantum Efficiency of IR(III) Complexes with N-Heterocyclic or Mesoionic Carbene Ligand: A Comparative Quantum Chemical Study
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Essential Role of Ancillary Ligand in Color Tuning and Quantum Efficiency of IR(III) Complexes with N-Heterocyclic or Mesoionic Carbene Ligand: A Comparative Quantum Chemical Study

机译:辅助配体在彩色调谐中的基本作用和IR(III)络合物与N-杂环或中碘碳配体的量子效率:比较量子化学研究

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摘要

Tuning photoluminescence properties is of prime importance for designing efficient light emitting diode (LED) materials. Here, we perform a computational study on the effect of normal N-heterocyclic carbene (NHC) and abnormal mesoionic carbene (MIC) ligands on the photoluminescence properties of some Ir(III) complexes, which are very promising LED materials. We find MIC as the privileged ligand in designing triplet emitters. The strong a-donating and moderate itaccepting properties of MIC render a lower access to the nonemissive triplet metal-centered state ((MC)-M-3), resulting in lowering the nonradiative rate constant (k(nr)) and correspondingly achieving higher quantum efficiency. We also demonstrate that the judicial choice of ancillary ligand can improve the efficiency of these materials even further. This quantum chemical investigation focuses on the importance of MIC as cyclometalating ligand and the substantial effects of ancillary ligands in controlling the color tuning and quantum efficiency for optoelectronic applications.
机译:调谐光致发光特性是最重要的设计高效的发光二极管(LED)的材料。在这里,我们执行正常的N-杂环卡宾(NHC)和异常介离子卡宾(MIC)配体对某些铱(III)配合物的光致发光性能,这是非常有前途的LED材料的影响的计算研究。我们发现MIC在设计三重态发射特权配体。 MIC的一个强的供和适度itaccepting属性呈现到非发射三重态的金属中心的状态((MC)-M-3),从而导致降低了非辐射率常数(k(NR))和相应地实现更高的较低接入量子效率。我们还表明,辅助配体的司法选择,可以进一步提高这些材料的效率。这种量子化学研究的重点是MIC的重要性,环金属配体和辅助配体在控制颜色调整和量子效率的光电应用的重大影响。

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