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多羧基化合物修饰的非磁性及磁性SiO2材料的制备及应用

中文摘要第3-8页
ABSTRACT第8-9页
Chapter1 Introduction第13-35页
    1.1 Overview of the organosilicon materials第13页
    1.2 The hydrosilylation reaction第13-18页
        1.2.1 Catalysts for hydrosilylation第14-16页
        1.2.2 Mechanism of hydrosilylation第16-18页
    1.3 Research progress of the heterogeneous Pt catalysts for hydrosilylation第18-27页
        1.3.1 Pt catalysts supported on organic polymer materials第18-19页
        1.3.2 Pt catalysts supported on inorganic materials第19-23页
        1.3.3 Pt catalysts supported on magnetic materials第23-25页
        1.3.4 Potential materials for the supported Pt Catalysts第25-27页
    1.4 The magnetic materials第27-32页
        1.4.1 The synthetized methods of the magnetic materials第28-29页
        1.4.2 The application of the magnetic materials on metal absorption第29-32页
    1.5 The significance and contents of this research第32-35页
        1.5.1 The research significance第32-33页
        1.5.2 The research contents第33-35页
Chapter2 Preparation and characterization of polycarboxylic acids-functionalized silica supported Pt catalysts第35-63页
    2.1 Introduction第35-36页
    2.2 Experiment materials第36-38页
        2.2.1 Reagents第36-37页
        2.2.2 Instruments第37-38页
    2.3 Experiment第38-46页
        2.3.1 Synthesis of polycarboxylic acids-functionalized SiO第38-41页
        2.3.2 Synthesis of immobilized Pt catalyst第41-42页
        2.3.3 Characterization of the Pt catalysts第42-43页
        2.3.4 Catalytic properties of the immobilized Pt catalysts第43-44页
        2.3.5 Optimization and evaluation of the prepared conditions第44-46页
    2.4 Results and discussion第46-61页
        2.4.1 Characterization of the catalysts第46-55页
        2.4.2 Catalytic properties of the immobilized Pt catalysts第55-57页
        2.4.3 Effect of prepared conditions on the catalytic activity第57-61页
    2.5 Summary第61-63页
Chapter3 Evaluation and application of polycarboxylic acids-functionalized silica supported Pt catalysts第63-83页
    3.1 Instruction第63页
    3.2 Experiment materials第63-65页
        3.2.1 Reagents第63-64页
        3.2.2 Instruments第64-65页
    3.3 Experiment第65-67页
        3.3.1 Effect of catalytic conditions on the catalytic performance第65-66页
        3.3.2 The applications of the immobilized Pt catalysts第66-67页
        3.3.3 The reusability of the immobilized Pt catalysts第67页
    3.4 Results and discussion第67-81页
        3.4.1 Effect of catalytic conditions on the hydrosilylation第67-72页
        3.4.2 The applicability of the immobilized Pt catalysts第72-80页
        3.4.3 The reusability of SiO2-DTPA-Pt,SiO2-NTA-Pt and SiO2-SA-Pt第80-81页
    3.5 Summary第81-83页
Chapter4 Synthesis and applications of polycarboxylic acids-functionalized magnetic silica gel第83-119页
    4.1 Introduction第83-84页
    4.2 Experiment materials第84-87页
        4.2.1 Reagents第84-86页
        4.2.2 Instruments第86-87页
    4.3 Experiment第87-95页
        4.3.1 Synthesis of polycarboxylic acids-functionalized magnetic silica gel第87-89页
        4.3.2 Synthesis of Fe3O4@SiO2-APCAs-Pt第89页
        4.3.3 Characterization of the polycarboxylic acids-functionalized magnetic SiO_2第89-92页
        4.3.4 Application of the magnetic Pt catalysts on alkene hydrosilylation第92-93页
        4.3.5 Application of the magnetic silica gel on Cu(II)adsorption第93-95页
    4.4 Results and discussion第95-117页
        4.4.1 Characterization of the magnetic Pt catalysts第95-104页
        4.4.2 Applications of the magnetic Pt catalysts on alkene hydrosilylation第104-112页
        4.4.3 Application of the magnetic silica gel on Cu(II)adsorption第112-117页
    4.5 Summary第117-119页
Chapter5 Conclusions and prospect第119-123页
    5.1 Conclusions第119-121页
        5.1.1 Preparation and characterization of polycarboxylic acids-functionalized silica supported Pt catalysts第119页
        5.1.2 The evaluation and application of polycarboxylic acids-functionalized silica supported Pt catalysts第119-120页
        5.1.3 Synthesis and application of polycarboxylic acids-functionalized magnetic silica gel第120-121页
    5.2 Prospect第121-123页
Reference第123-133页
Notes on publications and participation in scientific research第133-135页
Acknowledgement第135-136页

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