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中空微/纳结构的设计与合成:现状与未来趋势

The Design and Synthesis of Hollow Micro-/Nanostructures: Present and Future Trends.

机构信息

School of Chemical and Biomedical Engineering, Nanyang Technological University, 62 Nanyang Drive, Singapore, 637459, Singapore.

State Key Laboratory of Silicon Materials, School of Materials Science and Engineering, Zhejiang University, Hangzhou, 310027, P. R. China.

出版信息

Adv Mater. 2018 Sep;30(38):e1800939. doi: 10.1002/adma.201800939. Epub 2018 Jul 15.

Abstract

Hollow micro-/nanostructures have attracted tremendous interest owing to their intriguing structure-induced physicochemical properties and great potential for widespread applications. With the development of modern synthetic methodology and analytical instruments, a rapid structural/compositional evolution of hollow structures from simple to complex has occurred in recent decades. Here, an updated overview of research progress made in the synthesis of hollow structures is provided. After an introduction of definition and classification, achievements in synthetic approaches for these delicate hollow architectures are presented in detail. According to formation mechanisms, these strategies can be categorized into four different types, including hard-templating, soft-templating, self-templated, and template-free methods. In particular, the rationales and emerging innovations in conventional templating syntheses are in focus. The development of burgeoning self-templating strategies based on controlled etching, outward diffusion, and heterogeneous contraction is also summarized. In addition, a brief overview of template-free methods and recent advances on combined mechanisms is provided. Notably, the strengths and weaknesses of each category are discussed in detail. In conclusion, a perspective on future trends in the research of hollow micro-/nanostructures is given.

摘要

中空微/纳米结构由于其引人入胜的结构诱导物理化学性质和广泛应用的巨大潜力,引起了极大的关注。随着现代合成方法和分析仪器的发展,近几十年来,中空结构从简单到复杂的快速结构/组成演变已经发生。在这里,提供了对中空结构合成研究进展的最新概述。在介绍定义和分类之后,详细介绍了这些精细中空结构的合成方法的成就。根据形成机制,这些策略可以分为四种不同的类型,包括硬模板、软模板、自模板和无模板方法。特别是,关注常规模板合成中合理的和新兴的创新。还总结了基于控制蚀刻、向外扩散和异质收缩的新兴自模板策略的发展。此外,还提供了无模板方法和组合机制的最新进展的简要概述。值得注意的是,详细讨论了每种类别的优缺点。最后,对中空微/纳米结构研究的未来趋势进行了展望。

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