Organic functionalized Fe3O4/RGO nanocomposites for CO2 adsorption

被引:11
|
作者
Babu, C. M. [1 ]
Vinodh, R. [2 ]
Selvamani, A. [3 ]
Kumar, K. Prathap [3 ]
Parveen, A. Shakila [3 ]
Thirukumaran, P. [3 ]
Srinivasan, V. V. [3 ]
Balasubramaniam, R. [3 ]
Ramkumar, V. [4 ]
机构
[1] Katholieke Univ Leuven, Dept Chem, Leuven, Belgium
[2] Hanseo Univ, Dept Chem Engn, Seosan, South Korea
[3] Anna Univ, Dept Chem, Chennai 600025, Tamil Nadu, India
[4] Kyonggi Univ, Dept Phys, Suwon, South Korea
来源
JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING | 2017年 / 5卷 / 03期
关键词
Reduced graphene oxide; Nanocomposites; CO2; Adsorption; Amine crosslinked; CARBON-DIOXIDE ADSORPTION; GRAPHITE OXIDE; GRAPHENE; CAPTURE; ZEOLITE; PERFORMANCE; IMPROVEMENT; EFFICIENCY; NANOTUBES; AEROGEL;
D O I
10.1016/j.jece.2017.04.044
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The core-shell Fe3O4@SiO2 nanoparticles were functionalized on their surface with (3-aminopropyl) triethoxysilane and then crosslinked with 1,2-dibromoethane to obtain 1,2-dibromoethane crosslinked aminefunctionalized ironoxide nanoparticles (organic functionalized nanoparticles). Graphene oxide was synthesized by modified Hummer's method and then reduced with hydrazine hydrate to obtain reduced graphene oxide. The synthesized organic functionalized nanoparticles were dispersed on to the reduced graphene oxide to obtain reduced graphene oxide nanocomposites. The nanocomposites were characterized by using XRD, FT-IR, TGA, N-2 adsorption, SEM and TEM. The influence of textural properties of these nanocomposites over the CO2 adsorption behaviour was investigated. The nanocomposites showed high surface area of 423 m(2)/g with high porosity. This is due to the fine dispersion of the organic functionalized nanoparticles on to the reduced graphene oxide. These nanocomposites are used for CO2 adsorption showing high adsorption capacity of 6.9%.
引用
收藏
页码:2440 / 2447
页数:8
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