详细信息
高对比度阳离子型力致变色材料的设计、合成与性质 ( SCI-EXPANDED收录 EI收录)
Design,Synthesis and Properties of High-contrast Cationic Mechanofluorochromic Materials
文献类型:期刊文献
中文题名:高对比度阳离子型力致变色材料的设计、合成与性质
英文题名:Design,Synthesis and Properties of High-contrast Cationic Mechanofluorochromic Materials
作者:耿鹏[1];向娟娟[1];张兴红[1];袁爽[1];毛妙付[1];卢运祥[2];肖述章[1]
机构:[1]三峡大学材料与化工学院,宜昌443002;[2]华东理工大学化学系先进材料重点实验室,上海200237
年份:2023
卷号:44
期号:11
起止页码:41
中文期刊名:高等学校化学学报
外文期刊名:Chemical Journal of Chinese Universities
收录:CSTPCD;;EI(收录号:20234915156771);Scopus;WOS:【SCI-EXPANDED(收录号:WOS:001113990600001)】;北大核心:【北大核心2020】;CSCD:【CSCD2023_2024】;
基金:Supported by the National Natural Science Foundation of China (No.22171163) , the "111" Intellectual Attraction Base Project in CTGU, China (No.D20015) and the Yichang Natural Science Research Program, China (No.A23-2-025) .
语种:中文
中文关键词:力致变色;多形貌预测;质子化;刺激响应;荧光
外文关键词:Mechanochromic;Polymorph;Protonation;Stimuli-responsive;Fluorescence
摘要:高对比度有机力致变色荧光材料在商标防伪和信息存储中具有潜在应用价值,但关于发光变化显著(>100 nm)的力致变色材料的研究报道非常少.本文设计合成了具有大偶极矩的D-π-A有机分子N,N-二苯基-N-4-[2-(喹啉-2-基)乙烯基]苯胺盐酸盐(QV-TPA-HCl),并对其进行了多形貌预测.预测结果表明, QV-TPAHCl可能形成单分子态和π聚集体两种形式,而实验获得的单晶结构与预测的π聚集体的结构一致.在经过30和100℃交替研磨后,π聚集体与单分子态之间能够可逆地转变,导致其荧光在近红外(673 nm)与绿光(490nm)之间进行可逆改变,力致荧光差异达到183 nm.本文研究结果为设计高对比度力致变色荧光材料提供了新思路和新方法.
High-contrast organic mechanofluorochromic materials have potential applications in security ink and memory devices,but the mechanochromic materials with luminescence change over 100 nm are still limited.In this work,we designed a D-π-A organic molecule with large dipole moment N,N-diphenyl-4-[2-(quinolin-2-yl)]aniliue hydrochloride(QV-TPA-HCl),and performed Polymorph for the design molecule.Polymorph indicated that it had the potential to form both monomer andπ-πstacked cluster.Single crystal structure proved the formation ofπcluster.Upon alternative grinding at 30℃and 100℃,Near-infrared fluorescence(673 nm)and green lumines-cence(490 nm)could be obtained with luminescence difference 183 nm,due to the reversible conversion between theπcluster and monomer.Our investigation presents a rational strategy for designing high-contrast mechanochromic materials with significant luminescence change.
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