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Design and synthesis of ordered mesoporous silica materials with high degree of silica condensation at high temperature from a mixture of polymer surfactant with small organic ammonium.

Design and synthesis of ordered mesoporous silica materials with high degree of silica condensation at high temperature from a mixture of polymer surfactant with small organic ammonium. Research Abstract Details 

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  • Design and synthesis of ordered mesoporous silica materials with high degree of silica condensation at high temperature from a mixture of polymer surfactant with small organic ammonium. Abstract Text:

    chunyu wangChunyu Wang,yunchen duYunchen Du,defeng liDefeng Li,xiangyu guanXiangyu Guan,fei liFei Li,feng-shou xiaoFeng-Shou Xiao,chunyu wangChunyu Wang,yunchen duYunchen Du,defeng liDefeng Li,xiangyu guanXiangyu Guan,fei liFei Li,feng-shou xiaoFeng-Shou Xiao,

    Thermal stability on a mixture of triblock polymer (P123) and fluorocarbon surfactant (FC-4) in acidic media for synthesis of ordered mesoporous materials has been carefully investigated by NMR spectroscopy at various treated temperatures (RT-180 degrees C) and the templating mechanism of the mixture on high-temperature synthesis has been proposed. Accordingly, we have designed fluorocarbon-free templates for syntheses of ordered mesoporous silica materials at high temperatures. As expected, ordered mesoporous silica materials with high degree of silica condensation are synthesized at high temperatures from these designed templates.

    Design and synthesis of ordered mesoporous silica materials with high degree of silica condensation at high temperature from a mixture of polymer surfactant with small organic ammonium. Publishing Authors By Initials

    c wangC Wang,y duY Du,d liD Li,x guanX Guan,f liF Li,fs xiaoFS Xiao,c wangC Wang,y duY Du,d liD Li,x guanX Guan,f liF Li,fs xiaoFS Xiao,

    For similar abstracts research abstracts see: abstracts research

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    Design and synthesis of ordered mesoporous silica materials with high degree of silica condensation at high temperature from a mixture of polymer surfactant with small organic ammonium. Journal Published:

    PUBLICATION TYPE: Journal Article

    Journal: Journal of colloid and interface science

    VOLUME: 319

    Page Numbers: 370-3

    Journal Abbreviation:

    ISSN: 0021-9797

    DAY: 4

    MONTH: 12

    YEAR: 2007

    Design and synthesis of ordered mesoporous silica materials with high degree of silica condensation at high temperature from a mixture of polymer surfactant with small organic ammonium. Information

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    LANGUAGE: eng

    NlmUniqueID: 43125

    Design and synthesis of ordered mesoporous silica materials with high degree of silica condensation at high temperature from a mixture of polymer surfactant with small organic ammonium. Keywords Mesh Terms:

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    Grant and Affiliation Information for Design and synthesis of ordered mesoporous silica materials with high degree of silica condensation at high temperature from a mixture of polymer surfactant with small organic ammonium.

    AFFILIATION: Key Laboratory for Supramolecular Structure and Materials of Ministry of Education, Jilin University, Changchun 130012, China.

    Country: United States

    United States Research PublicationUnited States Research Publication

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    MEDLINETA: J Colloid Interface Sci

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