Large-Scale Synthesis of MOF-Derived Superporous Carbon Aerogels with Extraordinary Adsorption Capacity for Organic Solvents

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초록

Carbon aerogels (CAs) with 3D interconnected networks hold promise for application in areas such as pollutant treatment, energy storage, and electrocatalysis. In spite of this, it remains challenging to synthesize high-performance CAs on a large scale in a simple and sustainable manner. We report an eco-friendly method for the scalable synthesis of ultralight and superporous CAs by using cheap and widely available agarose (AG) biomass as the carbon precursor. Zeolitic imidazolate framework-8 (ZIF-8) with high porosity is introduced into the AG aerogels to increase the specific surface area and enable heteroatom doping. After pyrolysis under inert atmosphere, the ZIF-8/AG-derived nitrogen-doped CAs show a highly interconnected porous mazelike structure with a low density of 24 mg cm(-3), a high specific surface area of 516 m(2) g(-1), and a large pore volume of 0.58 cm(-3) g(-1). The resulting CAs exhibit significant potential for application in the adsorption of organic pollutants.

키워드

agarosecarbon aerogelsmesoporous materialsmetal-organic frameworksnanoarchitectured materialsFRAMEWORKEFFICIENTGRAPHENEHYDROGELSTEMPLATE
제목
Large-Scale Synthesis of MOF-Derived Superporous Carbon Aerogels with Extraordinary Adsorption Capacity for Organic Solvents
저자
Wang, ChaohaiKim, JeonghunTang, JingNa, JongbeomKang, Yong-MookKim, MinjunLim, HyunsooBando, YoshioLi, JianshengYamauchi, Yusuke
DOI
10.1002/anie.201913719
발행일
2020-01-27
유형
Article
저널명
Angewandte Chemie International Edition
59
5
페이지
2066 ~ 2070