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Field-directed and confined molecular assembly of mesostructured materials: Basic principles and new opportunities

机译:介观结构材料的场导向和局限性分子组装:基本原理和新机遇

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摘要

Molecular assembly enables the formation of material systems with multiple compositions and functions that are structured at the mesoscale (2-50 nm) and beyond. This approach allows structure control through the competitive tuning of bulk and surface interactions to yield new mechanical, catalytic, optoelectronic, biological, and other properties. The molecular-assembly process is governed by the interactions between different components of the assembling system and with their external environment. This review summarizes the fundamental principles of molecular assembly in the synthesis of mesostructured inorganic-organic materials and focuses on recent attempts to utilize external fields (magnetic, electric, or mechanical) and dimensional confinement (in one, two, and three dimensions) to direct the molecular assembly of mesostructured organic-in organic hybrids with astonishing complexity.
机译:分子组装能够形成具有多种成分和功能的材料系统,这些材料系统在中尺度(2-50 nm)及以上构建。这种方法允许通过对体和表面相互作用的竞争性调整来控制结构,以产生新的机械、催化、光电、生物和其他特性。分子组装过程受组装系统不同组件之间及其外部环境之间的相互作用的控制。本文综述了介观结构无机有机材料合成中分子组装的基本原理,并重点介绍了近年来利用外部场(磁场、电场或机械场)和维度限制(一维、二维和三维)来指导介观结构有机杂化物的分子组装的尝试,其复杂性惊人。

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