引用本文:
Yong Qiang He, Na Na Zhang, Xiao Dong Wang. Adsorption of graphene oxide/chitosan porous materials for metal ions[J]. Chinese Chemical Letters,
2011, 22(7): 859-862.
doi:
10.1016/j.cclet.2010.12.049
Citation: Yong Qiang He, Na Na Zhang, Xiao Dong Wang. Adsorption of graphene oxide/chitosan porous materials for metal ions[J]. Chinese Chemical Letters, 2011, 22(7): 859-862. doi: 10.1016/j.cclet.2010.12.049
Citation: Yong Qiang He, Na Na Zhang, Xiao Dong Wang. Adsorption of graphene oxide/chitosan porous materials for metal ions[J]. Chinese Chemical Letters, 2011, 22(7): 859-862. doi: 10.1016/j.cclet.2010.12.049
Adsorption of graphene oxide/chitosan porous materials for metal ions
摘要:
Porous graphene oxide/chitosan (PGOC) materials were prepared by a unidirectional freeze-drying method. Their porous structure, mechanical property and adsorption for metal ions were investigated. The results show that the incorporation of graphene oxide (GO) significantly increased the compressive strength of the PGOC materials. The saturated adsorption capacity of Pb2+ increased about 31%, up to 99 mg/g when 5 wt% GO was incorporated These biodegradable, nontoxic, efficient PGOC materials will be a potential adsorbent for metal ions in aqueous solution.
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关键词:
- Chitosan
- / Graphene oxide
- / Porous material
- / Adsorption
- / Metal ions
English
Adsorption of graphene oxide/chitosan porous materials for metal ions
Abstract:
Porous graphene oxide/chitosan (PGOC) materials were prepared by a unidirectional freeze-drying method. Their porous structure, mechanical property and adsorption for metal ions were investigated. The results show that the incorporation of graphene oxide (GO) significantly increased the compressive strength of the PGOC materials. The saturated adsorption capacity of Pb2+ increased about 31%, up to 99 mg/g when 5 wt% GO was incorporated These biodegradable, nontoxic, efficient PGOC materials will be a potential adsorbent for metal ions in aqueous solution.
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Key words:
- Chitosan
- / Graphene oxide
- / Porous material
- / Adsorption
- / Metal ions
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