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Recent progress in covalent organic framework thin films: fabrications, applications and perspectives

Han WangChangsha 410082Zhuotong ZengChangsha 410011Piao XuChangsha 410082Lianshan LiBeijing 100190Guangming ZengChangsha 410082Rong XiaoChangsha 410011Zhiyong TangBeijing 100190Danlian HuangChangsha 410082Lin TangChangsha 410082Cui LaiChangsha 410082Danni JiangChangsha 410082Yang LiuChangsha 410082Huan YiChangsha 410082Lei QinCollege of Environmental Science and Engineering, Hunan University and Key Laboratory of Environmental Biology and Pollution Control (Hunan University), Ministry of EducationShujing YeChangsha 410082Xiaoya RenChangsha 410082Wangwang TangChangsha 410082
2018en
ABI

Аннотация

As a newly emerging class of porous materials, covalent organic frameworks (COFs) have attracted much attention due to their intriguing structural merits (e.g., total organic backbone, tunable porosity and predictable structure). However, the insoluble and unprocessable features of bulk COF powder limit their applications. To overcome these limitations, considerable efforts have been devoted to exploring the fabrication of COF thin films with controllable architectures, which open the door for their novel applications. In this critical review, we aim to provide the recent advances in the fabrication of COF thin films not only supported on substrates but also as free-standing nanosheets via both bottom-up and top-down strategies. The bottom-up strategy involves solvothermal synthesis, interfacial polymerization, room temperature vapor-assisted conversion, and synthesis under continuous flow conditions; whereas, the top-down strategy involves solvent-assisted exfoliation, self-exfoliation, mechanical delamination, and chemical exfoliation. In addition, the applications of COF thin films including energy storage, semiconductor devices, membrane-separation, sensors, and drug delivery are summarized. Finally, to accelerate further research, a personal perspective covering their synthetic strategies, mechanisms and applications is presented.

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