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多功能纳米系统的自组装与设计。

The Self-Assembly and Design of Polyfunctional Nanosystems.

机构信息

A.E. Arbuzov Institute of Organic and Physical Chemistry, FRC Kazan Scientific Center of RAS, 8 Arbuzov Street, Kazan 420088, Russia.

A.E. Arbuzov Institute of Organic and Physical Chemistry, Kazan National Research Technological University, 68 Karl Marx Street, Kazan 420015, Russia.

出版信息

Int J Mol Sci. 2021 Feb 23;22(4):2223. doi: 10.3390/ijms22042223.

Abstract

The current task of the molecular sciences is to create unique nanostructured materials with a given structure and with specific physicochemical properties on the basis of the existing wide range of molecules of natural and synthetic origin. A promising and inexpensive way to obtain nanostructured materials is the spontaneous self-assembly of molecular building blocks during random collisions in real dispersive systems in solution and at interfaces. This editorial aims to summarize the major points from the 11 scientific papers that contributed to the special issue "The Self-Assembly and Design of Polyfunctional Nanosystems", assessing the modern self-assembly potential and strategies for maintaining sustainable development of the nanoindustry.

摘要

当前,分子科学的任务是在现有的天然和合成来源的广泛分子的基础上,创造具有给定结构和特定物理化学性质的独特的纳米结构材料。一种很有前途且廉价的获得纳米结构材料的方法是在溶液和界面的真实分散体系中,分子构建块在随机碰撞过程中自发自组装。本社论旨在总结对特刊“多功能纳米系统的自组装和设计”做出贡献的 11 篇科学论文的要点,评估现代自组装的潜力和维持纳米产业可持续发展的策略。

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