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Applications of Flow Injection Analysis with Chemiluminescence Detection

Preface第5-11页
Chapter 1 General Introduction第11-44页
    1.1 Chemiluminescence第13-26页
        1.1.1 Principle of chemiluminescence第14-16页
        1.1.2 Chemiluminescence systems第16-23页
        1.1.3 Bioluminescence第23页
        1.1.4 Electrochemiluminescence第23-26页
    1.2 Flow Analysis Techniques第26-32页
        1.2.1 Principle of flow injection analysis第27-29页
        1.2.2 Components of a flow injection analysis apparatus第29-32页
    1.3 Nanoparticles in Chemiluminescence Detection第32-36页
        1.3.1 Properties of nanoparticles第32-33页
        1.3.2 Use of nanoparticles in chemiluminescence第33-34页
        1.3.3 Use of nanoparticles in bioassays第34-36页
    1.4 Objectives of This Study第36-37页
    References第37-44页
Chapter 2 Determination of Trace Amounts of Chromium (VI) by Flow Injection Analysis with Chemiluminescence Detection第44-59页
    2.1 Introduction第44-45页
    2.2 Experimental第45-48页
        2.2.1 Reagents第45-46页
        2.2.2 Apparatus第46页
        2.2.3 Sample preparation第46-48页
        2.2.4 Flow injection analysis procedure第48页
    2.3 Results and discussion第48-55页
        2.3.1 Kinetic study of the proposed CL system第48-49页
        2.3.2 Possible reaction mechanism第49-50页
        2.3.3 Optimization of flow system第50-51页
        2.3.4 Optimization of Reagent Concentrations第51-52页
        2.3.5 Optimization of manifold parameters第52-53页
        2.3.6 Analytical performance of the system for Cr(VI) measurements第53页
        2.3.7 Interferences from foreign substances第53-54页
        2.3.8 Analysis of water samples and certified reference samples第54-55页
    2.4 Conclusion第55页
    References第55-59页
Chapter 3 Highly Sensitive Flow-injection Chemiluminescence Detection of Carbonyl compounds in Wine Samples第59-68页
    3.1 Introduction第59-60页
    3.2 Experimental第60-62页
        3.2.1 Reagents第60-61页
        3.2.2 Apparatus第61页
        3.2.3 Flow injection procedure第61页
        3.2.4 Standard spectrophotometric method第61-62页
    3.3 Results and discussion第62-66页
        3.3.1 Optimization of experimental parameters第62-63页
        3.3.2 Possible reaction mechanism第63-64页
        3.3.3 Analytical Performance第64-65页
        3.3.4 Sample analysis第65-66页
    3.4 Conclusions第66页
    References第66-68页
Chapter 4 Highly sensitive Flow-injection Chemiluminescence determination of pyrogallol compounds第68-78页
    4.1 Introduction第68页
    4.2 Experimental第68-70页
        4.2.1 Reagents第68-69页
        4.2.2 Apparatus第69页
        4.2.3 Procedure第69-70页
        4.2.4 Sample preparation第70页
    4.3 Results and discussion第70-76页
        4.3.1 Optimization of experimental parameters第70-74页
        4.3.2 Possible reaction mechanism第74页
        4.3.3 Interference第74-75页
        4.3.4.A nalytical Performance第75页
        4.3.5 Sample analysis第75-76页
    4.4 Conclusion第76页
    References第76-78页
Chapter 5 Size dependent active effect of CdTe Quantum Dots on Pyrogallol-H2O2 Chemiluminescence system for Chromium(III) Detection第78-90页
    5.1 Introduction第78-79页
    5.2 Experimental第79-81页
        5.2.1 Chemicals第79页
        5.2.2 Synthesis of CdTe QDs capped with MSA第79-80页
        5.2.3 Apparatus第80页
        5.2.4 Procedure for CL Detection第80-81页
    5.3 Results and Discussions第81-88页
        5.3.1 PL and Absorption Spectra of CdTe QDs第81-82页
        5.3.2 Selection of oxidative system第82-83页
        5.3.3 Sensitized effect of CdTe QDs on pyrogallol-H_20_2 CL第83-84页
        5.3.4 Optimization of the reaction conditions第84-86页
        5.3.5 Possible CL Reaction Mechanism第86-87页
        5.3.6 Analytical applications第87-88页
    5.4 Conclusion第88页
    References第88-90页
Chapter 6 Enhancement effect of CdTe Quantum Dots-IgG bioconjugates on Chemiluminescence of Luminol H_20_2 system第90-108页
    6.1 Introduction第90-91页
    6.2 Experimental第91-93页
        6.2.1 Chemicals第91页
        6.2.2 Microwave irradiation synthesis of water-compatible CdTe QDs第91-92页
        6.2.3 Apparatus第92页
        6.2.4 Bio-conjugation of CdTe QDs with Immunoglobulin G第92页
        6.2.5 Chemiluminescence Measurements第92-93页
    6.3 Results and Discussions第93-104页
        6.3.1 PL and Absorption Spectra of CdTe QDs第93-94页
        6.3.2 Enhancement effect of CdTe QDs-IgG biocojugates on luminol-H_20_2 CL system第94-95页
        6.3.3 Effect of concentration of IgG第95-96页
        6.3.4 Effect of proteases第96-98页
        6.3.5 Effect of size of quantum dots第98-99页
        6.3.6 Optimization of other reaction conditions第99-100页
        6.3.7 Possible CL reaction mechanism第100-101页
        6.3.8 Analytical Application第101-104页
    6.4 Conclusion第104页
    References第104-108页
Chapter 7 Polystyrene Microspheres based Sandwich Immunosensor using CdTe Quantum dots Amplification and Ultrasensitive Flow Injection Chemiluminescence Detection第108-120页
    7.1 Introduction第108-109页
    7.2 Materials and Methods第109-113页
        7.2.1 Materials第109-110页
        7.2.2 Apparatus第110页
        7.2.3 Synthesis of water-compatible CdTe QDs and bio-conjugation with HRP labeled anti-HIgG第110-111页
        7.2.4 Preparation of PS microspheres based sandwich immunosensor第111-112页
        7.2.5 Flow injection chemiluminescence measurements第112-113页
    7.3 Results and Discussion第113-118页
        7.3.1 Comparison of differently labeled probes第113-114页
        7.3.2 Incubation time and temperature第114-115页
        7.3.3 Effect of ionic strength第115页
        7.3.4 Optimization of CL reagent system第115-116页
        7.3.5 Chemiluminescence of the flow Immunoassay第116-117页
        7.3.6 Analysis of Clinical Specimens第117-118页
    7.4 Conclusion第118页
    References第118-120页
Acknowledgements第120-121页
Publications第121-122页
Abstract第122-124页

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