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    首頁 >> 畢業(yè)論文(設(shè)計) >> 化工建筑畢業(yè)論文(設(shè)計) >> Analytical Electrochemistry (Third Edition)電子書
    Analytical Electrochemistry (Third Edition)電子書
    資料類別
       化工建筑畢業(yè)論文(設(shè)計)
    課程(專業(yè))
      Analytical Electrochemistry
    關(guān)鍵詞
      Analytical Electrochemistry|Fundamental Concepts
    適用年級
      大學
    身份要求
      普通會員
    金 幣
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    文件格式

      pdf
    文件大小
      3077K
    發(fā)布時間
      2009-08-06 17:55:00
    預(yù)覽文件
     
    下載次數(shù)
      31
    發(fā)布人   lcw
     內(nèi)容簡介:     Analytical Electrochemistry (Third Edition)電子書
       Preface xi
       Abbreviations and Symbols xiii
       1 Fundamental Concepts 1
       1.1 Why Electroanalysis?, 1
       1.2 Faradaic Processes, 3
       1.2.1 Mass-Transport-Controlled Reactions, 4
       1.2.1.1 Potential-Step Experiment, 7
       1.2.1.2 Potential-Sweep Experiments, 9
       1.2.2 Reactions Controlled by the Rate of Electron Transfer, 12
       1.2.2.1 Activated Complex Theory, 16
       1.3 Electrical Double Layer, 19
       1.4 Electrocapillary Effect, 23
       1.5 Supplementary Reading, 25
       Problems, 27
       References, 28
       2 Study of Electrode Reactions and Interfacial Properties 29
       2.1 Cyclic Voltammetry, 29
       2.1.1 Data Interpretation, 32
       2.1.1.1 Reversible Systems, 32
       2.1.1.2 Irreversible and Quasi-reversible Systems, 34
       2.1.2 Study of Reaction Mechanisms, 35
       2.1.3 Study of Adsorption Processes, 37
       2.1.4 Quantitative Applications, 41
       2.2 Spectroelectrochemistry, 42
       2.2.1 Experimental Arrangement, 43
       2.2.2 Principles and Applications, 44
       2.2.3 Electrochemiluminescence, 47
       2.2.4 Optical Probing of Electrode–Solution Interfaces, 48
       2.3 Scanning Probe Microscopy, 49
       2.3.1 Scanning Tunneling Microscopy, 50
       2.3.2 Atomic Force Microscopy, 51
       2.3.3 Scanning Electrochemical Microscopy, 53
       2.4 Electrochemical Quartz Crystal Microbalance, 57
       2.5 Impedance Spectroscopy, 58
       Examples, 61
       Problems, 63
       References, 64
       3 Controlled-Potential Techniques 67
       3.1 Chronoamperometry, 67
       3.2 Polarography, 69
       3.3 Pulse Voltammetry, 76
       3.3.1 Normal-Pulse Voltammetry, 76
       3.3.2 Differential-Pulse Voltammetry, 77
       3.3.3 Square-Wave Voltammetry, 80
       3.3.4 Staircase Voltammetry, 82
       3.4 AC Voltammetry, 84
       3.5 Stripping Analysis, 85
       3.5.1 Anodic Stripping Voltammetry, 86
       3.5.2 Potentiometric Stripping Analysis, 89
       3.5.3 Adsorptive Stripping Voltammetry and Potentiometry, 91
       3.5.4 Cathodic Stripping Voltammetry, 94
       3.5.5 Abrasive Stripping Voltammetry, 94
       3.5.6 Applications, 94
       3.6 Flow Analysis, 98
       3.6.1 Principles, 98
       3.6.2 Cell Design, 100
       3.6.3 Mass Transport and Current Response, 103
       3.6.4 Detection Modes, 105
       Examples, 108
       Problems, 111
       References, 112
       4 Practical Considerations 115
       4.1 Electrochemical Cells, 115
       4.2 Solvents and Supporting Electrolytes, 117
       viii CONTENTS
       4.3 Oxygen Removal, 118
       4.4 Instrumentation, 119
       4.5 Working Electrodes, 123
       4.5.1 Mercury Electrodes, 123
       4.5.2 Solid Electrodes, 127
       4.5.2.1 Rotating Disk and Rotating Ring Disk Electrodes, 128
       4.5.2.2 Carbon Electrodes, 130
       4.5.2.2.1 Glassy Carbon Electrodes, 131
       4.5.2.2.2 Carbon Paste Electrodes, 131
       4.5.2.2.3 Carbon Fiber Electrodes, 133
       4.5.2.2.4 Diamond Electrodes, 133
       4.5.2.3 Metal Electrodes, 134
       4.5.3 Chemically Modified Electrodes, 136
       4.5.3.1 Self-Assembled Monolayers, 136
       4.5.3.2 Carbon-Nanotube-Modified Electrodes, 139
       4.5.3.3 Sol-gel Encapsulation of Reactive Species, 139
       4.5.3.4 Electrocatalytically Modified Electrodes, 140
       4.5.3.5 Preconcentrating Electrodes, 141
       4.5.3.6 Permselective Coatings, 143
       4.5.3.7 Conducting Polymers, 146
       4.5.4 Microelectrodes, 149
       4.5.4.1 Diffusion at Microelectrodes, 151
       4.5.4.2 Microelectrode Configurations, 152
       4.5.4.3 Composite Electrodes, 154
       Examples, 158
       Problems, 158
       References, 159
       5 Potentiometry 165
       5.1 Principles of Potentiometric Measurements, 165
       5.2 Ion-Selective Electrodes, 173
       5.2.1 Glass Electrodes, 173
       5.2.1.1 pH Electrodes, 173
       5.2.1.2 Glass Electrodes for Other Cations, 177
       5.2.2 Liquid Membrane Electrodes, 177
       5.2.2.1 Ion Exchanger Electrodes, 179
       5.2.2.2 Neutral Carrier Electrodes, 182
       5.2.3 Solid-State Electrodes, 185
       5.2.4 Coated-Wire Electrodes and Solid-State Electrodes Without an
       Internal Filling Solution, 188
       5.3 On-line, On-site, and In Vivo Potentiometric Measurements, 190
       Examples, 194
       Problems, 196
       References, 197
       CONTENTS ix
       6 Electrochemical Sensors 201
       6.1 Electrochemical Biosensors, 202
       6.1.1 Enzyme-Based Electrodes, 202
       6.1.1.1 Practical and Theoretical Considerations, 202
       6.1.1.2 Enzyme Electrodes of Analytical Significance, 208
       6.1.1.2.1 Glucose Sensors, 208
       6.1.1.2.2 Ethanol Electrodes, 212
       6.1.1.2.3 Urea Electrodes, 213
       6.1.1.2.4 Toxin (Enzyme Inhibition) Biosensors, 215
       6.1.1.3 Tissue and Bacteria Electrodes, 215
       6.1.2 Affinity Biosensors, 216
       6.1.2.1 Immunosensors, 216
       6.1.2.2 DNA Hybridization Biosensors, 218
       6.1.2.2.1 Background and Principles, 218
       6.1.2.2.2 Electrical Transduction of DNA
       Hybridization, 219
       6.1.2.2.3 Other Electrochemical DNA
       Biosensors, 221
       6.1.2.3 Receptor-Based Sensors, 222
       6.1.2.4 Electrochemical Sensors Based on Molecularly
       Imprinted Polymers, 224
       6.2 Gas Sensors, 224
       6.2.1 Carbon Dioxide Sensors, 225
       6.2.2 Oxygen Electrodes, 226
       6.3 Solid-State Devices, 227
       6.3.1 Ion-Selective Field Effect Transistors, 227
       6.3.2 Microfabrication of Solid-State Sensor Assemblies, 229
       6.3.3 Microfabrication Techniques, 229
       6.3.4 Micromachined Analytical Microsystems, 232
       6.4 Sensor Arrays, 234
       Examples, 237
       Problems, 238
       References, 239

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