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Hollow multishell structures exercise temporal–spatial ordering and dynamic smart behaviour

纳米孔 纳米技术 级联 智能材料 表面改性 计算机科学 材料科学 生物系统 化学 色谱法 物理化学 生物
作者
Jiangyan Wang,Jiawei Wan,Nailiang Yang,Quan Li,Dan Wang
出处
期刊:Nature Reviews Chemistry [Nature Portfolio]
卷期号:4 (3): 159-168 被引量:209
标识
DOI:10.1038/s41570-020-0161-8
摘要

A hollow multishell structure (HoMS) is an assembly of multiple shells with voids between the individual shells. Accessible through nanopores, these voids represent separate reaction environments in the same assembly, such that HoMSs have unique properties that are applicable to diverse fields. These applications have mostly exploited the large specific surface area, high loading capacity and/or buffering effect of HoMSs, benefiting the mass/energy transmission and effective surface area. In comparison, the temporal–spatial ordering of reactions, as well as the dynamic smart behaviour of HoMSs, have been less explored but are also emphasized in this Perspective. We first describe the synthesis of HoMSs and the thermodynamic and kinetic aspects of their formation. We then consider the composition and structural functionalization of each shell within a HoMS and then highlight how these enable applications based on temporal–spatial ordering and dynamic smart behaviour. A hollow multishell structure can feature voids between porous shells that allow it to controllably release multiple guests or play host to cascade reactions. This Perspective describes host–guest chemistry and the temporal–spatial ordering and dynamic responses of multishell structures to their environment.
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