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General Synthesis of Discrete Mesoporous Carbon Microspheres through a Confined Self-Assembly Process in Inverse Opals
被引:83
作者:
Sun, Zhenkun
[1
,2
,3
]
Liu, Yong
[1
,2
]
Li, Bin
[1
,2
]
Wei, Jing
[1
,2
]
Wang, Minghong
[1
,2
]
Yue, Qin
[1
,2
]
Deng, Yonghui
[1
,2
]
Kaliaguine, Serge
[3
]
Zhao, Dongyuan
[1
,2
]
机构:
[1] Fudan Univ, Shanghai Key Lab Mol Catalysis & Innovat Mat, Dept Chem, Shanghai 20043, Peoples R China
[2] Fudan Univ, Adv Mat Lab, Shanghai 20043, Peoples R China
[3] Univ Laval, Dept Genie Chim, Fac Sci & Genie, Quebec City, PQ G1V 0A6, Canada
来源:
基金:
高等学校博士学科点专项科研基金;
关键词:
SILICA SHELL;
MAGNETIC-RESONANCE;
DELIVERY VEHICLE;
CYTOCHROME-C;
NANOPARTICLES;
SPHERES;
POROSITY;
CORE;
NANOSPHERES;
ADSORPTION;
D O I:
10.1021/nn402994m
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
A general confined coassembly process has been demonstrated to produce discrete uniform mesoporous carbon microspheres with 0.8-1 mu m particle size using 3-1)-ordered macroporous silica as the template. The obtained mesoporous carbon microspheres (MC-MSs) have uniform and discrete spherical morphology, variable symmetry (hexagonal p6mm or cubic Im3m) of mesostructures, high specific surface areas (500-1100 m(2)/g), large pore volumes (0.6-2.0 cm(3)/g), and highly accessible large mesopores (7-10.3 nm). The particle size of the carbon microspheres can be easily tuned by simply using templates with different macropore sizes. It was found that the smaller MC-MSs (330 nm) with higher surface-to-volume ratio tend to shape into an integral monolithic MC-MS matrix and larger MC-MSs (>800 nm) with lower surface-to-volume ratio to discrete spherical morphology. This feature is attributed to the difference in shrinkage behavior of mesoporous carbon spheres confined in the macropores caused by the interaction between the silica wall and carbon microspheres. Adsorption experiments indicate that the cobaltbased nanoparticle-incorporated mesoporous carbon microspheres exhibit excellent size selectivity for protein adsorption in a complex solution and good magnetic separability for easy recycling.
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页码:8706 / 8714
页数:9
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