TY - JOUR
T1 - Large-pore ordered mesoporous materials templated from non-Pluronic amphiphilic block copolymers
AU - Deng, Yonghui
AU - Wei, Jing
AU - Sun, Zhenkun
AU - Zhao, Dongyuan
PY - 2013/4/15
Y1 - 2013/4/15
N2 - The self-assembly of small surfactants and Pluronicê amphiphilic copolymers has enabled the synthesis of a range of ordered mesoporous materials with high surface area, diverse compositions, variable pore structures and tunable pore sizes. It has recently been realized that non-Pluronic block copolymers can be used as robust templates for the synthesis of novel and high-performance mesoporous materials with crystalline frameworks, ultra-large pores, and abundant pore symmetries, which are not accessible using the Pluronic counterparts. In this review, we introduce the principle of self-assembly of block copolymers and their phase separations, and summarize recently developed synthetic methods and strategies for ordered mesoporous silicas, metal oxides, carbons and metals which have shown superior performances for applications in various fields, including solar cells, batteries, fuel cells, and sensors.
AB - The self-assembly of small surfactants and Pluronicê amphiphilic copolymers has enabled the synthesis of a range of ordered mesoporous materials with high surface area, diverse compositions, variable pore structures and tunable pore sizes. It has recently been realized that non-Pluronic block copolymers can be used as robust templates for the synthesis of novel and high-performance mesoporous materials with crystalline frameworks, ultra-large pores, and abundant pore symmetries, which are not accessible using the Pluronic counterparts. In this review, we introduce the principle of self-assembly of block copolymers and their phase separations, and summarize recently developed synthetic methods and strategies for ordered mesoporous silicas, metal oxides, carbons and metals which have shown superior performances for applications in various fields, including solar cells, batteries, fuel cells, and sensors.
UR - https://www.scopus.com/pages/publications/84874923445
U2 - 10.1039/c2cs35426h
DO - 10.1039/c2cs35426h
M3 - 文章
C2 - 23258081
AN - SCOPUS:84874923445
SN - 0306-0012
VL - 42
SP - 4054
EP - 4070
JO - Chemical Society Reviews
JF - Chemical Society Reviews
IS - 9
ER -