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矛盾还是统一?用于原位快速识别具有敏感特性的多组分凝胶剂的自分类或共组装的热稳定荧光探针。

Contradiction or Unity? Thermally Stable Fluorescent Probe for In Situ Fast Identification of Self-sort or Co-assembly of Multicomponent Gelators with Sensitive Properties.

作者信息

An Zhihang, Shan Tianyu, He Huiwen, Ma Meng, Shi Yanqin, Chen Si, Wang Xu

机构信息

College of Materials Science and Engineering, Zhejiang University of Technology, Hangzhou 310014, China.

出版信息

ACS Appl Mater Interfaces. 2021 Feb 24;13(7):8774-8781. doi: 10.1021/acsami.0c21630. Epub 2021 Feb 9.

DOI:10.1021/acsami.0c21630
PMID:33561340
Abstract

Analyzing the assembly patterns of multicomponent gelators is important for understanding their assembly rules and precisely manipulating their molecular structure to form a tailored multifunctional supramolecular gel. But the fast in situ recognition technology to infer whether the assembly pattern is a self-sorting or co-assembled system is lacking. For developing a widely applicable stable and sensitive fluorescent probe to infer assembly patterns, we design and synthesize the multiple peripheral functional group tetraphenylethene (TPE) modified well-defined cubic core polyhedral oligomeric silsesquioxane (POSS) three-dimensional (3D) dendrimer. POSS-TPE can form a thermally stable self-assembly structure after being incubated in a wide temperature range, and the resultant special thermally stable photoluminescence (PL) intensity provides a novel possibility of fluorescent probe. Then, POSS-TPE sensitively catches the mechanical stress changes of the confined space provided by the gel networks and infers the assembly patterns by comparing the mechanical stress change laws of a self-sorting or co-assembled system. So, the application of fluorescent probe in assembly fields is enlarged in this research. In the future, this widely applicable fluorescent probe will be helpful to develop supramolecular assembly materials consisting of multicomponent gels.

摘要

分析多组分凝胶剂的组装模式对于理解其组装规则以及精确操控其分子结构以形成定制的多功能超分子凝胶至关重要。但目前缺乏一种快速的原位识别技术来推断组装模式是自分类还是共组装体系。为了开发一种广泛适用的稳定且灵敏的荧光探针来推断组装模式,我们设计并合成了具有多个外围官能团的四苯乙烯(TPE)修饰的结构明确的立方核多面体低聚倍半硅氧烷(POSS)三维(3D)树枝状大分子。POSS-TPE在较宽温度范围内孵育后可形成热稳定的自组装结构,且由此产生的特殊热稳定光致发光(PL)强度提供了一种新型荧光探针的可能性。然后,POSS-TPE能灵敏地捕捉凝胶网络提供的受限空间的机械应力变化,并通过比较自分类或共组装体系的机械应力变化规律来推断组装模式。因此,本研究扩大了荧光探针在组装领域的应用。未来,这种广泛适用的荧光探针将有助于开发由多组分凝胶组成的超分子组装材料。

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