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xiejf

专家顾问 (文学泰斗)

麦麦爸爸爱小牛

[交流] Adv. Mater.最新综述:空心结构介孔材料---化学合成、功能化及应用 已有16人参与

具有空心结构的介孔材料因其巨大的比表面积在能源、催化等领域有着广泛的应用。本文介绍了近年来空心结构介孔材料的大量文献的最新研究进展,为研究该领域提供了很好的指导。题目为Hollow-Structured Mesoporous Materials: Chemical Synthesis, Functionalization and Applications

Keywords:
hollow materials;mesoporous materials;core–shell materials;synthesis;applications
Hollow-structured mesoporous materials (HMMs), as a kind of mesoporous material with unique morphology, have been of great interest in the past decade because of the subtle combination of the hollow architecture with the mesoporous nanostructure. Benefitting from the merits of low density, large void space, large specific surface area, and, especially, the good biocompatibility, HMMs present promising application prospects in various fields, such as adsorption and storage, confined catalysis when catalytically active species are incorporated in the core and/or shell, controlled drug release, targeted drug delivery, and simultaneous diagnosis and therapy of cancers when the surface and/or core of the HMMs are functionalized with functional ligands and/or nanoparticles, and so on. In this review, recent progress in the design, synthesis, functionalization, and applications of hollow mesoporous materials are discussed. Two main synthetic strategies, soft-templating and hard-templating routes, are broadly sorted and described in detail. Progress in the main application aspects of HMMs, such as adsorption and storage, catalysis, and biomedicine, are also discussed in detail in this article, in terms of the unique features of the combined large void space in the core and the mesoporous network in the shell. Functionalization of the core and pore/outer surfaces with functional organic groups and/or nanoparticles, and their performance, are summarized in this article. Finally, an outlook of their prospects and challenges in terms of their controlled synthesis and scaled application is presented.Adv. Mater.最新综述:空心结构介孔材料---化学合成、功能化及应用
Hollow-Structured Mesoporous Materials: Chemical Synthesis, Functionalization and Applications.jpg
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麦麦爸爸爱小牛
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lu洪燕

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小木虫: 金币+0.5, 给个红包,谢谢回帖
大牛,可以说一下为什么介孔碳具有光热转化能力呢,是因为什么原因引起的啊

发自小木虫Android客户端
63楼2020-06-12 15:36:08
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nowitzki_ci

专家顾问 (著名写手)

0.8

不好意思大牛 被我先发了

[ 发自手机版 http://muchong.com/3g ]
2楼2014-03-31 19:58:05
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0.8

顶一下,感谢分享!
3楼2014-03-31 20:04:39
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0.8

顶一下,感谢分享!
4楼2014-03-31 20:07:15
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