Transient and elusive intermediate states in self‐assembly processes: An overview

Ziyi Zhang, Ze Hu, Junfei Xing, Quan Li
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Abstract

The transient and elusive intermediate states are the keys in self‐assembly processes, which are common phenomena shaping the structure, properties, and functionalities of assembled materials across many scientific domains. However, the understanding about the intermediate states of self‐assembly process is always challenging and limited. In this review, we focus on these states by combining theoretical and experimental approaches. By examining a wide variety of self‐assembly systems that span from biological to metal–organic nanostructures, this review uncovers the wealth of intermediate states of self‐assembled materials. In addition to combining the current knowledge, it will identify challenges and provide a new insight into the opportunities for future research.
自组装过程中的瞬态和难以捉摸的中间状态:综述
瞬态和难以捉摸的中间态是自组装过程的关键,而自组装过程是塑造组装材料结构、特性和功能的常见现象,横跨多个科学领域。然而,人们对自组装过程中间态的理解始终充满挑战和局限。在这篇综述中,我们将结合理论和实验方法,重点探讨这些状态。通过研究从生物到金属有机纳米结构的各种自组装系统,本综述揭示了自组装材料的丰富中间状态。除了结合当前的知识外,它还将指出面临的挑战,并为未来的研究机会提供新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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