Xiong Chaoyue, Xue Guodong, Mao Lijun, Gu Lianghong, He Chao, Zheng Yonghao, Wang Dongsheng
School of Optoelectronic Science and Technology, University of Electronic Science and Technology of China, Chengdu 610054, China.
School of Materials Science and Engineering, Xihua University, Chengdu 610039, China.
Langmuir. 2021 Jan 19;37(2):802-809. doi: 10.1021/acs.langmuir.0c03133. Epub 2021 Jan 6.
Understanding the relationship between chemical structure and photoswitching property of donor-acceptor Stenhouse adducts (DASAs) is necessary for developments and applications of the novel photoresponsive molecule. In the current work, we demonstrated a close relationship between the length of carbon spacer and photoswitching property of DASAs. A series of DASAs with barbituric acid substituted electron-withdrawing part and -methylaniline substituted electron-donating part were synthesized. With shortening the carbon spacer between the phenyl and amine groups in the electron-donating part, the efficiency and rate of the light-induced -to- isomerization are improved in all the test solvents. The molecular energy variation during the isomerization process was investigated by density functional theory calculation to further understand the mechanism. This work provides a reliable carbon spacer strategy to control the photoswitching behavior of DASAs using chemical methods.
了解给体-受体斯滕豪斯加合物(DASAs)的化学结构与光开关性质之间的关系对于新型光响应分子的开发和应用至关重要。在当前工作中,我们证明了碳间隔基的长度与DASAs的光开关性质之间存在密切关系。合成了一系列具有巴比妥酸取代的吸电子部分和对甲基苯胺取代的供电子部分的DASAs。通过缩短供电子部分中苯基和胺基之间的碳间隔基,在所有测试溶剂中光诱导的Z - 到E - 异构化的效率和速率都得到了提高。通过密度泛函理论计算研究了异构化过程中的分子能量变化,以进一步了解其机理。这项工作提供了一种可靠的碳间隔基策略,可利用化学方法控制DASAs的光开关行为。