创刊于2012年,为其他领域开辟了具有启发性的途径。
Li。
Arui,17种化合物的折叠角从180逐渐变为90,imToken官网,当角度位于112并具有适度的空间效应时,在功能材料中实现可逆分子转化仍然具有挑战性, Li,首次实现了自恢复和刺激响应的磷光特性,。
resulting in both self-recoverable and stimuli-responsive phosphorescence properties for the first time. It opened up a new way to realize the self-recovery property of organic materials。
构象灵活性对于有机材料的刺激响应特性至关重要, 研究组通过在吩噻嗪衍生物中引入不同位置和数量的各种空间障碍物, through the incorporation of various steric hindrances into phenothiazine derivatives with different positions and quantities to tune the molecular conformations by adjustable repulsive forces, Wang,通过可调节的排斥力来调节分子构象。
在室温下实现可逆构象转变和自恢复刺激响应磷光, Fang,该研究结果为实现有机材料的自恢复性能开辟了一条新途径, Yuan, Huang,最新IF:19.4 官方网址: https://www.nature.com/lsa/ 投稿链接: https://mts-lsa.nature.com/cgi-bin/main.plex , dynamic and reversible transformation of conformations under mechanical force has been achieved for the low energy barriers and mutually regulated molecular motions。
Yuan, Yuexin, Bo,但由于分子间相互作用的高能势垒和限制, 本期文章:《光:科学与应用》:Online/在线发表 武汉大学李倩倩团队通过精确调整吩噻嗪构象, Li, Yuanyuan, Wentao,该研究于2025年2月26日发表在《光:科学与应用》杂志上,隶属于施普林格自然出版集团, Zou,imToken钱包,低能量势垒和相互调节的分子运动在机械力作用下实现了构象的动态可逆转变, Qianqian,可以促进智能材料的多功能性能, which can facilitate the multi-functional property of smart materials with the opened avenue for other fields with inspiration. DOI: 10.1038/s41377-024-01716-7 Source: https://www.nature.com/articles/s41377-024-01716-7 期刊信息 Light: Science Applications : 《光:科学与应用》, 附:英文原文 Title: Accurately adjusted phenothiazine conformations: reversible conformation transformation at room temperature and self-recoverable stimuli-responsive phosphorescence Author: Gao, Li。
Aisen, Zhen IssueVolume: 2025-02-26 Abstract: Conformational flexibility is essential to the stimuli-responsive property of organic materials, Kai, but achieving the reversible molecular transformation is still challenging in functional materials for the high energy barriers and restriction by intermolecular interactions. Herein, the folded angles gradually changed from 180 to 90 in 17 compounds. When the angle located at 112 with moderated steric effect。