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通过配位模式调控紫精-金属聚合物的可调变色特性用于无墨可擦除打印

Tunable Chromic Properties of Viologen-Metal Polymers Modulated by Coordination Modes for Inkless Erasable Printing.

作者信息

Zhang Yan-Yan, Wang He-Chong, Jin Xin-Xin, Li Run-Jie, Li Qian-Ge, Sun Rong, Li Peng, Wang Bing-Wu, Wang Lin, Sui Qi

机构信息

Key Laboratory of Surface &, Interface Science of Polymer Materials of Zhejiang Province, School of Chemistry and Chemical Engineering, Zhejiang Sci-Tech University, Hangzhou, 310018, P. R. China.

Center for High Pressure Science (CHiPS), State Key Laboratory of Metastable Materials Science and Technology, Yanshan University Qinhuangdao, 066004, Hebei, P. R. China.

出版信息

Chemistry. 2023 Nov 8;29(62):e202302397. doi: 10.1002/chem.202302397. Epub 2023 Sep 28.

Abstract

Inkless and erasable printing (IEP) based on chromic materials holds great promise to alleviate environmental and sustainable problems. Metal-organic polymers (MOPs) are bright platforms for constructing IEP materials. However, it is still challenging to design target MOPs with excellent specific functions rationally due to the intricate component-structure-property relationships. Herein, an effective strategy was proposed for the rational design IEP-MOP materials. The stimuli-responsive viologen moiety was introduced into the construction of MOPs to give it potential chromic behaviors and two different coordination models (i. e. bilateral coordination model, M ; unilateral coordinated model, M ) based on the same viologen ligand were designed. Aided by theoretical calculations, model M was recommended secondarily as a more suitable system for IEP materials. Along this line, two representative viologen-Zn MOPs 1 and 2 with models M and M were synthesized successfully. Experiments exhibit that 1 does have quicker stimuli response, stronger color contrast and longer radical lifetime compared to 2. Significantly, the obtained 1-IEP media brightly inherits the excellent chromic characteristics of 1 and the flexibility of the paper at the same time, which achieves most daily printing requirements, as well as enough resolution and durability to be used in identification by smart device.

摘要

基于变色材料的无墨可擦除打印(IEP)在缓解环境和可持续发展问题方面具有巨大潜力。金属有机聚合物(MOPs)是构建IEP材料的理想平台。然而,由于复杂的成分-结构-性能关系,合理设计具有优异特定功能的目标MOPs仍然具有挑战性。在此,提出了一种合理设计IEP-MOP材料的有效策略。将刺激响应性紫精部分引入到MOPs的构建中,使其具有潜在的变色行为,并基于相同的紫精配体设计了两种不同的配位模式(即双边配位模式,M;单边配位模式,M)。在理论计算的辅助下,模型M被推荐为更适合IEP材料的体系。沿着这条路线,成功合成了具有模型M和M的两种代表性紫精-锌MOPs 1和2。实验表明,与2相比,1确实具有更快的刺激响应、更强的颜色对比度和更长的自由基寿命。值得注意的是,所获得的1-IEP介质同时明亮地继承了1的优异变色特性和纸张的柔韧性,满足了大多数日常打印需求,以及足够的分辨率和耐久性,可用于智能设备识别。

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