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具有白光团簇发光的脂肪族聚酯。

Aliphatic Polyesters with White-Light Clusteroluminescence.

机构信息

State Key Laboratory of Motor Vehicle Biofuel Technology, International Research Center for X Polymers, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, China.

ZJU-Hangzhou Global Scientific and Technological Innovation Center, Hangzhou 311215, China.

出版信息

J Am Chem Soc. 2022 Aug 24;144(33):15286-15294. doi: 10.1021/jacs.2c05948. Epub 2022 Jul 7.

Abstract

Single-molecule white-light emission (SMWLE) has many advantages in practical applications; however, the fabrication of SMWLE from nonconjugated luminescent polymers, namely, clusteroluminogens (CLgens), is still a big challenge. Herein, the first example of linear nonconjugated polyesters with SMWLE is reported. Twenty-four kinds of nonconjugated aliphatic polyesters with tunable clusteroluminescence (CL) colors and efficiency were synthesized by the copolymerization of six epoxides and four anhydrides. Experimental and calculation results prove that, at the primary structure level, the balance of structural flexibility and rigidity via adjusting the side-chain length significantly enhances the efficiency of CL without wavelength change. However, altering the chemical structures of the monomer from succinic anhydride to -maleic anhydride (MA), -MA, and citraconic anhydride (CA), secondary structures of these polyesters change from helix to straight and folding sheet accompanied by gradually red-shifted CL from 460 to 570 nm due to the increase in through-space -π* interactions, as demonstrated by the computational and experimental results. Then, pure SMWLE with CIE coordination (0.30, 0.32) based on overlapped short-wavelength and long-wavelength CL is achieved in CA-based polyesters. This work not only provides further insights into the emission mechanism of CL but also provides a new strategy to manipulate the properties of CL by regulating the hierarchical structures of CLgens.

摘要

单分子白光发射 (SMWLE) 在实际应用中有许多优点;然而,将非共轭发光聚合物(即团簇发光团 (CLgens))制成 SMWLE 仍然是一个巨大的挑战。本文报道了首例具有 SMWLE 的线性非共轭聚酯。通过六种环氧化物和四种酸酐的共聚,合成了 24 种具有可调 CL 颜色和效率的非共轭脂肪族聚酯。实验和计算结果证明,在一级结构水平上,通过调整侧链长度来平衡结构的灵活性和刚性,可在不改变波长的情况下显著提高 CL 的效率。然而,将单体的化学结构从琥珀酸酐改变为 -马来酸酐 (MA)、-MA 和柠康酐 (CA),这些聚酯的二级结构从螺旋结构转变为直线和折叠片结构,同时由于通过空间的 -π*相互作用的增加,CL 逐渐红移至 460 至 570nm,如计算和实验结果所示。然后,在基于 CA 的聚酯中实现了基于重叠短波长和长波长 CL 的纯 SMWLE,CIE 坐标为 (0.30, 0.32)。这项工作不仅深入了解了 CL 的发射机制,还提供了一种通过调节 CLgens 的层次结构来控制 CL 性质的新策略。

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