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通过仿生改变分子结构和微环境赋予氟啰啉类化合物水致变色性及其在可擦写纸中的应用。

Endowing Hydrochromism to Fluorans via Bioinspired Alteration of Molecular Structures and Microenvironments and Expanding Their Potential for Rewritable Paper.

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University , Changchun, 130012, P. R. China.

College of Chemistry, Jilin University , Changchun, 130012, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2017 Nov 1;9(43):38032-38041. doi: 10.1021/acsami.7b12363. Epub 2017 Oct 23.

Abstract

Interest and effort toward new materials for rewritable paper have increased dramatically because of the exciting advantages for sustainable development and better nature life cycle. Inspired by how nature works within living systems, herein, we have used fluorans, as a concept verification, to endow original acidochromic, basochromic or photochromic molecules with broader properties, such as switchable with solvent, water, heat, electricity, stress, other force, etc., via simplified methods (i.e., via variation of submolecular structure or microenvironments). The hydrochromic visual change and reversible behavior of selected molecules have been explored, and the primary mechanism at the atomic or subatomic level has been hypothesized. In addition, several newly demonstrated hydrochromic fluorans have been utilized for water-jet rewritable paper (WJRP), which exhibit great photostability, high hydrochromic contrast, and fast responsive rate and which can be reused at least 30 times without significant variation. The water-jet prints have good resolution and various colors and can keep legibility after a few months or years. This improved performance is a major step toward practical applications of WJRP.

摘要

由于可持续发展和更好的自然生命周期的令人兴奋的优势,人们对可重写纸的新材料的兴趣和努力大大增加。受生物系统内自然运作方式的启发,本文中,我们使用氟烷作为概念验证,通过简化的方法(即通过亚分子结构或微环境的变化)赋予原始的酸致变色、碱致变色或光致变色分子更广泛的性质,例如可与溶剂、水、热、电、应力等切换。已经探索了选定分子的变色和可逆行为,并假设了原子或亚原子水平的主要机制。此外,还利用几种新展示的水致变色氟烷来制备水射流可重写纸(WJRP),其表现出高的光稳定性、高的水致变色对比度和快速响应速率,并且可以至少重复使用 30 次而没有明显的变化。水射流打印品具有良好的分辨率和各种颜色,并且在几个月或几年后仍保持可读性。这种性能的提高是 WJRP 实际应用的重要一步。

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