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激子在晶态蒽中的弛豫动力学由激基缔合物和偶极耦合的协同作用控制。

Concerted Interplay of Excimer and Dipole Coupling Governs the Exciton Relaxation Dynamics in Crystalline Anthracenes.

机构信息

School of Chemistry, Indian Institute of Science Education, and Research Thiruvananthapuram (IISER-TVM), Maruthamala P. O., Vithura, Thiruvananthapuram, Kerala, 695551, India.

School of Physics, Indian Institute of Science Education, and Research Thiruvananthapuram (IISER-TVM), Maruthamala P. O., Vithura, Thiruvananthapuram, Kerala, 695551, India.

出版信息

Chemistry. 2018 Dec 5;24(68):18089-18096. doi: 10.1002/chem.201804139. Epub 2018 Nov 8.

Abstract

A combined theoretical and experimental investigation into the role of concerted long- (dipole coupling) and short-range (orbital overlap mediated excimer) electronic interactions in modulating the emission of six crystalline acetylanthracenes (1-3) is reported. Friedel-Crafts acylation of anthracene rendered crystalline acetylanthracenes with discrete close packing, varied orbital overlap, and resultant distinct emission (blue-green-yellow) from cooperative excimer and dipole coupling. Time-resolved emission spectroscopy (TRES) studies and the Kasha's exciton theory based quantitative estimation of dipole coupling (mean-field approximation) substantiates the exciton dynamics in crystalline 1-3. Extension of the Kasha's exciton model beyond the traditional nearest-neighbor approach, and consistent agreement among the computed spectral shifts and TRES temporal components, corroborate a holistic approach to decipher the exciton relaxation dynamics in the molecular assembly of novel photonic materials.

摘要

本文对协同长程(偶极耦合)和短程(轨道重叠介导的激基)电子相互作用在调节六种结晶乙酰蒽(1-3)的发射中的作用进行了理论和实验的综合研究。蒽的傅克酰基化反应得到了具有离散密堆积、变化的轨道重叠和协同激基和偶极耦合产生的不同发射(蓝-绿-黄)的结晶乙酰蒽。时间分辨发射光谱(TRES)研究和基于 Kasha 的偶极耦合定量估计(平均场近似)的激子理论证实了 1-3 中晶体的激子动力学。将 Kasha 的激子模型扩展到传统的最近邻方法之外,以及计算光谱位移和 TRES 时间分量之间的一致吻合,证实了一种整体方法,可以破译新型光子材料分子组装中的激子弛豫动力学。

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