Ordered Mesoporous Silica Pyrolyzed from Single-Source Self-Assembled Organic–Inorganic Giant Surfactants
We report the preparation of hexagonal mesoporous silica from single-source giant surfactants constructed via dihydroxyl-functionlized polyhedral oligomeric silsesquioxane (DPOSS) heads and a polystyrene (PS) tail. After thermal annealing, the obtained well-ordered hexagonal hybrid was pyrolyzed to...
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Published in | Journal of the American Chemical Society Vol. 143; no. 33; pp. 12935 - 12942 |
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Main Authors | , , , , , , , , , , , , , , , , |
Format | Journal Article |
Language | English |
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American Chemical Society
25.08.2021
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Abstract | We report the preparation of hexagonal mesoporous silica from single-source giant surfactants constructed via dihydroxyl-functionlized polyhedral oligomeric silsesquioxane (DPOSS) heads and a polystyrene (PS) tail. After thermal annealing, the obtained well-ordered hexagonal hybrid was pyrolyzed to afford well-ordered mesoporous silica. A high porosity (e.g., 581 m2/g) and a uniform and narrow pore size distribution (e.g., 3.3 nm) were achieved. Mesoporous silica in diverse shapes and morphologies were achieved by processing the precursor. When the PS tail length was increased, the pore size expanded accordingly. Moreover, such pyrolyzed, ordered mesoporous silica can help to increase both efficiency and stability of nanocatalysts. |
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AbstractList | We report the preparation of hexagonal mesoporous silica from single-source giant surfactants constructed via dihydroxyl-functionlized polyhedral oligomeric silsesquioxane (DPOSS) heads and a polystyrene (PS) tail. After thermal annealing, the obtained well-ordered hexagonal hybrid was pyrolyzed to afford well-ordered mesoporous silica. A high porosity (e.g., 581 m2/g) and a uniform and narrow pore size distribution (e.g., 3.3 nm) were achieved. Mesoporous silica in diverse shapes and morphologies were achieved by processing the precursor. When the PS tail length was increased, the pore size expanded accordingly. Moreover, such pyrolyzed, ordered mesoporous silica can help to increase both efficiency and stability of nanocatalysts. |
Author | Li, Xing-Han Feng, Xueyan Yan, Xiao-Yun Dai, Shuqi Liu, Tong Zhang, Wei Han, Di Hsu, Chih-Hao Guo, Qing-Yun Cheng, Stephen Z. D Su, Zebin Xu, Yongsheng Yin, Jiafu Huang, Jiahao Liu, Yuchu Huang, Mingjun Zhang, Bo-xing |
AuthorAffiliation | Department of Polymer Science, School of Polymer Science and Polymer Engineering South China Advanced Institute for Soft Matter Science and Technology, School of Molecular Science and Engineering School of Chemical Engineering and Technology College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering Guangdong Provincial Key Laboratory of Functional and Intelligent Hybrid Materials and Devices |
AuthorAffiliation_xml | – name: College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering – name: Guangdong Provincial Key Laboratory of Functional and Intelligent Hybrid Materials and Devices – name: Department of Polymer Science, School of Polymer Science and Polymer Engineering – name: South China Advanced Institute for Soft Matter Science and Technology, School of Molecular Science and Engineering – name: School of Chemical Engineering and Technology |
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