Zhu Guohua, Yu Tianjun, Chen Jinping, Hu Rui, Yang Guoqiang, Zeng Yi, Li Yi
Key Laboratory of Photochemical Conversion and Optoelectronic Materials, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
University of Chinese Academy of Science, Beijing 100049, China.
ACS Appl Mater Interfaces. 2023 Mar 1;15(8):11033-11041. doi: 10.1021/acsami.2c21560. Epub 2023 Feb 20.
Developing fluorescent motifs capable of displaying mechano- and thermo-stimuli reversibly and ratiometrically is appealing for monitoring the deformation or temperature to which polymers are subjected. Here, a series of excimer-type chromophores Si-Py ( = 1-3) consisting of two pyrenes linked with oligosilanes of one to three silicon atoms is developed as the fluorescent motif incorporated in a polymer. The fluorescence of Si-Py is steered with the linker length where Si-Py and Si-Py with disilane and trisilane linkers display prominent excimer emission accompanied by pyrene monomer emission. Covalent incorporation of Si-Py and Si-Py in polyurethane gives fluorescent polymers PU-Si-Py and PU-Si-Py, respectively, where intramolecular pyrene excimers and corresponding combined emission of excimer and monomer are obtained. Polymer films of PU-Si-Py and PU-Si-Py display instant and reversible ratiometric fluorescence change during the uniaxial tensile test. The mechanochromic response arises from the reversible suppression of excimer formation during the mechanically induced separation of the pyrene moieties and relaxation. Furthermore, PU-Si-Py and PU-Si-Py show thermochromic response toward temperature, and the inflection point from the ratiometric emission as a function of temperature gives an indication of the glass transition temperature () of the polymers. The design of the excimer-based mechanophore with oligosilane provides a generally implementable way to develop mechano- and thermo-dual-responsive polymers.
开发能够可逆且比例式地显示机械和热刺激的荧光基序,对于监测聚合物所承受的变形或温度很有吸引力。在此,一系列由两个芘与一至三个硅原子的低聚硅烷相连组成的准分子型发色团Si-Py( = 1-3)被开发为掺入聚合物中的荧光基序。Si-Py的荧光由连接基团长度控制,其中带有乙硅烷和丙硅烷连接基团的Si-Py和Si-Py显示出显著的准分子发射并伴有芘单体发射。将Si-Py和Si-Py共价掺入聚氨酯中,分别得到荧光聚合物PU-Si-Py和PU-Si-Py,其中获得了分子内芘准分子以及相应的准分子和单体的组合发射。PU-Si-Py和PU-Si-Py的聚合物膜在单轴拉伸试验期间显示出即时且可逆的比例荧光变化。机械变色响应源于在机械诱导的芘部分分离和弛豫过程中准分子形成的可逆抑制。此外,PU-Si-Py和PU-Si-Py对温度显示出热致变色响应,并且作为温度函数的比例发射的拐点给出了聚合物玻璃化转变温度()的指示。具有低聚硅烷的基于准分子的机械发色团的设计提供了一种普遍可行的方法来开发机械和热双响应聚合物。