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Ultralight covalent organic framework/graphene aerogels with hierarchical porosity
by
Yang, Jin
, Thomas, Arne
, Li, Shuang
, Pachfule, Pradip
, Ye, Meng-Yang
, Li, Changxia
, Schmidt, Johannes
in
639/301/357/551
/ 639/638/298/918/1053
/ 639/638/298/923/966
/ Humanities and Social Sciences
/ multidisciplinary
/ Science
/ Science (multidisciplinary)
2020
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Ultralight covalent organic framework/graphene aerogels with hierarchical porosity
by
Yang, Jin
, Thomas, Arne
, Li, Shuang
, Pachfule, Pradip
, Ye, Meng-Yang
, Li, Changxia
, Schmidt, Johannes
in
639/301/357/551
/ 639/638/298/918/1053
/ 639/638/298/923/966
/ Humanities and Social Sciences
/ multidisciplinary
/ Science
/ Science (multidisciplinary)
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Ultralight covalent organic framework/graphene aerogels with hierarchical porosity
by
Yang, Jin
, Thomas, Arne
, Li, Shuang
, Pachfule, Pradip
, Ye, Meng-Yang
, Li, Changxia
, Schmidt, Johannes
in
639/301/357/551
/ 639/638/298/918/1053
/ 639/638/298/923/966
/ Humanities and Social Sciences
/ multidisciplinary
/ Science
/ Science (multidisciplinary)
2020
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Ultralight covalent organic framework/graphene aerogels with hierarchical porosity
Journal Article
Ultralight covalent organic framework/graphene aerogels with hierarchical porosity
2020
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Overview
The fabrication of macroscopic objects from covalent organic frameworks (COFs) is challenging but of great significance to fully exploit their chemical functionality and porosity. Herein, COF/reduced graphene oxide (rGO) aerogels synthesized by a hydrothermal approach are presented. The COFs grow in situ along the surface of the 2D graphene sheets, which are stacked in a 3D fashion, forming an ultralight aerogel with a hierarchical porous structure after freeze-drying, which can be compressed and expanded several times without breaking. The COF/rGO aerogels show excellent absorption capacity (uptake of >200 g organic solvent/g aerogel), which can be used for removal of various organic liquids from water. Moreover, as active material of supercapacitor devices, the aerogel delivers a high capacitance of 269 F g
−1
at 0.5 A g
−1
and cycling stability over 5000 cycles.
Macroscopic architectures of covalent organic frameworks (COF) allow to fully exploit their chemical functionality and porosity but achieving three-dimensional hierarchical porous COF architectures remains challenging. Here, the authors present a COF/reduced graphene oxide aerogel which is synthesized by growing COF during a hydrothermal process along the surface of graphene sheets.
Publisher
Nature Publishing Group UK,Nature Portfolio
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