首页|Synthesis of covalent organic framework materials and their application in the field of sensing

Synthesis of covalent organic framework materials and their application in the field of sensing

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Covalent organic frameworks(COFs)are an emerging type of porous crystalline polymers formed by combining strong covalent bonds with organic building blocks.Due to their large surface area,high intrinsic pore space,good crystallization properties,high stability,and designability of the resultant units,COFs are widely studied and used in the fields of gas adsorption,drug transport,energy storage,photoelectric catalysis,electrochemistry,and sensors.In recent years,the rapid development of the Internet of Things and people's yearning for a better life have put forward higher and more requirements for sensors,which are the core components of the Internet of Things.Therefore,this paper reviews the recent progress of COFs in synthesis methods and sensing applications,especially in the last five years.This paper first introduces structure,properties,and synthesis methods of COFs and discusses advantages and disadvantages of different synthesis methods.Then,the research progress of COFs in different sensing fields,such as metal ion sensors,gas sensors,biomedical sensors,humidity sensors,and pH sensors,is introduced systematically.Conclusions and prospects are also presented in order to provide a reference for researchers concerned with COFs and sensors.

covalent organic framework materialsstructural design and synthesissensing applicationgas sensors

Weiyu Zhang、Shiwei Liu、Qihua Sun、Ning Tian、Zhaofeng Wu

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Xinjiang Key Laboratory of Solid-State Physics and Devices,Urumqi 830046,China

School of Physics Science and Technology,Xinjiang University,Urumqi 830046,China

National Natural Science Foundation of ChinaXinjiang National Science Fund for Distinguished Young ScholarsKey programs of Xinjiang Natural Science FoundationTianshan Innovation Team Program of Xinjiang Uygur Autonomous Region

219640162022D01E372022B020512020D14038

2024

纳米研究(英文版)

纳米研究(英文版)

CSTPCD
ISSN:
年,卷(期):2024.17(1)
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