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基于纳米量子点增强过氧化氢与亚硫酸氢根、高碘酸根与芬顿反应体系的化学发光效应研究

摘要第4-5页
Abstract第5-6页
Chapter 1 Introduction to Chemiluminescence and Application of Nanomaterials in Chemiluminescence第11-19页
    1.1 Chemiluminescence第11-14页
    1.2 Application of nanomaterials in chemiluminescence第14-19页
Chapter 2 Chemiluminescence Character of ZnS Quantum Dots with Bisulphite-Hydrogen Peroxide System in Acidic Medium第19-29页
    2.1 Introduction第19-21页
        2.1.1 NaH_SO_3-H_2O_2 System第19-20页
        2.1.2 Use of NMs in CL systems第20-21页
    2.2 Experimental第21-22页
        2.2.1 Chemical and materials第21页
        2.2.2 Apparatus第21页
        2.2.3 Synthesis of ZnS QDs第21-22页
    2.3 Results and discussion第22-28页
        2.3.1 UV-Visible and photoluminescent Studies第22页
        2.3.2 CL kinetic study第22-24页
        2.3.3 Free Radical Scavenger Studies第24-25页
        2.3.4 EPR Study第25-26页
        2.3.5 Emitting species第26-28页
    2.4 Conclusion第28-29页
Chapter 3 Enhancement of periodate-hydrogen peroxide chemiluminescence by nitrogen doped carbon dots and its application for the determination of pyrogallol and gallic acid第29-42页
    3.1 Introduction第29-30页
        3.1.1 KIO4-H2O2 system第29-30页
    3.2 Experimental第30-31页
        3.2.1 Chemical and materials第30页
        3.2.2 Apparatus第30-31页
        3.2.3 Synthesis of N-CDs第31页
    3.3 Results and discussion第31-41页
        3.3.1 Characterization of N-CDs第31-35页
        3.3.2 Batch CL Analysis第35-36页
        3.3.3 Free Radical Studies第36-37页
        3.3.4 EPR Study第37-38页
        3.3.5 Emitting species第38-39页
        3.3.6 Analytical parameters for the determination of pyrogallol and gallic acid第39-41页
    3.4 Conclusion第41-42页
Chapter 4 Redox cycling of iron using carbon dots enhanced chemiluminescence: Mechanism of electron-hole induction in carbon dots第42-57页
    4.1 Introduction第42-43页
        4.1.1 Fenton system第42-43页
    4.2 Experimental第43-44页
        4.2.1 Chemical and materials第43页
        4.2.2 Apparatus第43页
        4.2.3 Synthesis of N-CDs第43-44页
    4.3 Results and discussion第44-55页
        4.3.1 Kinetic CL profile第44-45页
        4.3.2 Emitting species and free radicals scavengers study第45-48页
        4.3.3 EPR analysis第48-49页
        4.3.4 Mechanism of N-CDs enhanced Fenton system第49-55页
    4.4 Conclusion第55-57页
Chapter 5 An efficient way for sensing ferrous ion and construction of CRET system through carbon dots enhanced chemiluminescence第57-70页
    5.1 Introduction第57-58页
    5.2 Experimental第58-59页
        5.2.1 Chemical and materials第58页
        5.2.2 Apparatus第58页
        5.2.3 Synthesis of N-CDs第58-59页
    5.3 Results and discussion第59-69页
        5.3.1 Feasibility of new CRET system第59-63页
        5.3.2 Metal Ion Sensing Capability of N-CDs enhanced Fenton reaction第63-64页
        5.3.3 Influence of iron on CL第64-65页
        5.3.4 Selectivity of proposed sensor第65页
        5.3.5 Interfering Ions Study第65-67页
        5.3.6 Analysis of real samples第67-68页
        5.3.7 Analytical Figures of Merit第68-69页
    5.4 Conclusion第69-70页
Summary第70-72页
References第72-80页
Acknowledgement第80-82页
Curriculum Vitae第82-83页

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