详细信息
Effect of Oxide Content of Graphene Oxide Membrane on Remarkable Adsorption for Calcium Ions
文献类型:期刊文献
中文题名:Effect of Oxide Content of Graphene Oxide Membrane on Remarkable Adsorption for Calcium Ions
作者:Jie Jiang[1,2];Long Yan[1];Haiping Fang[1,3]
机构:[1]Shanghai Institute of Applied Physics,Chinese Academy of Sciences,Shanghai 201800,China;[2]University of Chinese Academy of Sciences,Beijing 100049,China;[3]Department of Physics,East China University of Science and Technology,Shanghai 200237,China
年份:2021
卷号:38
期号:10
起止页码:22
中文期刊名:Chinese Physics Letters
外文期刊名:中国物理快报(英文版)
收录:CSTPCD;;Scopus;CSCD:【CSCD2021_2022】;
基金:Supported by the National Natural Science Foundation of China (Grant No. 11675246).
语种:英文
中文关键词:adsorption;stability;Adsorption;
摘要:Graphene oxide membranes(GOMs),as one of the most promising novel materials,have gained great interest in the field of adsorption.However,the oxygen content of graphene oxide is directly related to its adsorption properties,such as suspension stability,adsorption capacity,and reusability of GOMs.Here,a series of reduced GOMs with oxygen content from 28%to 12%were conveniently prepared by the thermally reduced and the corresponding interlayer spacing of these membranes changed from 8.0Ato 3.7A.These prepared GOMs have remarkable Ca^(2+)adsorption capacity,which increases with the oxygen content or interlayer spacing of GOMs.Importantly,the max adsorption capacity of the mass ratio between adsorbed Ca2+and pristine GOMs can reach up to 0.481 g/g,which is about one order of magnitude higher than the adsorption capacity of activated sludge,magnetic Fe_(3)O_(4),functionalized silica,zeolite molecular sieve,and other reported previously.Moreover,GOMs show excellent stability and the Ca^(2+)can be easily desorbed by water,so that the GOMs can be reused.Our previous theoretical analysis suggests that this remarkable adsorption is attributable to the strong interactions between Ca^(2+)and GO sheets,including the ion-interactions between Ca2+and aromatic graphitic rings as well as the electrostatic interaction between Ca^(2+)and oxygen-containing groups.
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