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Heterogeneous electrode processes and localized corrosion [[electronic resource] /] / Yongjun Tan
Heterogeneous electrode processes and localized corrosion [[electronic resource] /] / Yongjun Tan
Autore Tan Yongjun <1963->
Pubbl/distr/stampa Hoboken, N.J., : Wiley, 2013
Descrizione fisica 1 online resource (272 p.)
Disciplina 620.1/1223
Collana Wiley series in corrosion
Soggetto topico Corrosion and anti-corrosives
Heterogeneous catalysis
Electrocatalysis
ISBN 1-118-46636-5
1-283-70043-3
1-118-46633-0
1-118-46635-7
Classificazione SCI013050
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Machine generated contents note: Preface Chapter I. Homogeneous Electrode Models and Uniform Corrosion Measurements 1.1 Homogeneous electrodes and traditional electrochemical methods 1.2 Mixed electrodes and uniform corrosion models 1.3 The mixed potential theory and electrochemical corrosion measurement 1.4 Electrochemical impedance investigation of electrode-solution interface 1.5 Electrochemical noise monitoring of rapid electrode processes 1.6 Issues and difficulties in traditional electrochemical methods Chapter II. Probing Electrode Inhomogeneity, Electrochemical Heterogeneity and Localized Corrosion 2.1 Probing electrode inhomogeneity 2.2 Probing electrochemical heterogeneity and localized corrosion 2.3 Overview of various techniques for probing localized corrosion Chapter III. Visualizing Localized Corrosion Using Electrochemically Integrated Multi-Electrode Arrays 3.1 An electrochemically integrated multi-electrode array, the wire beam electrode 3.2 Visualizing the progression of localized corrosion in an Evans water drop 3.3 Visualizing localized corrosion in environments with ion concentration gradients 3.4 Visualizing localized corrosion by the WBE in conjunction with scanning probes Chapter IV. Measuring Thermodynamic and Kinetic Parameters from Localized Corrosion Processes 4.1 Methods of probing localized corrosion thermodynamics and kinetics 4.2 Measuring localized corrosion using the overpotential-galvanic current method 4.3 Measuring localized corrosion using the galvanic current method 4.4 Measuring localized corrosion using the Rn-WBE method Chapter V. Characterizing Inhomogeneity and Localised Corrosion on Coated Electrode Surfaces 5.1 Characterising inhomogeneities in organic coatings and inhibitor films 5.2 Characterising inhomogeneity in organic coatings using the WBE method 5.3 The effects of coating inhomogeneity on electrochemical measurement 5.4 Visualisng underfilm corrosion and the effects of cathodic protection 5.5 Studying corrosion protection by coatings and cathodic protection Chapter VI. Designing Experiments for Studying Localized Corrosion and Its Inhibition in Inhomogeneous Media 6.1 Basic issues in localized corrosion and inhibitor test design 6.2 Fundamental considerations in selecting corrosion measurement techniques 6.3 Designing corrosion tests in highly-resistive and inhomogeneous media 6.4 Case studies: Designing crevice corrosion tests by means of the WBE 6.5 Case study: Designing experiments for localized corrosion inhibitor discovery Chapter VII. Sensing Localized Electrodeposition and Electrodissolution 7.1 Experimental methods for sensing localized electrodeposition and dissolution 7.2 Sensing localized electrodeposition using the WBE 7.3 Sensing localized electrodissolution using the WBE 7.4 Sensing nonuniform electrochemical deposition of organic coatings Chapter VIII. Versatile Heterogeneous Electrode Processes 8.1 Scanning and modeling various heterogeneous electrode processes 8.2 Electrochemical noise generation from electrochemical heterogeneity 8.3 Harvesting electrical power from electrochemical using the WBE 8.4 Further research issues on electrochemical heterogeneity.
Record Nr. UNINA-9910141381703321
Tan Yongjun <1963->  
Hoboken, N.J., : Wiley, 2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Heterogeneous electrode processes and localized corrosion [[electronic resource] /] / Yongjun Tan
Heterogeneous electrode processes and localized corrosion [[electronic resource] /] / Yongjun Tan
Autore Tan Yongjun <1963->
Edizione [1st ed.]
Pubbl/distr/stampa Hoboken, N.J., : Wiley, 2013
Descrizione fisica 1 online resource (272 p.)
Disciplina 620.1/1223
Collana Wiley series in corrosion
Soggetto topico Corrosion and anti-corrosives
Heterogeneous catalysis
Electrocatalysis
ISBN 1-118-46636-5
1-283-70043-3
1-118-46633-0
1-118-46635-7
Classificazione SCI013050
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Machine generated contents note: Preface Chapter I. Homogeneous Electrode Models and Uniform Corrosion Measurements 1.1 Homogeneous electrodes and traditional electrochemical methods 1.2 Mixed electrodes and uniform corrosion models 1.3 The mixed potential theory and electrochemical corrosion measurement 1.4 Electrochemical impedance investigation of electrode-solution interface 1.5 Electrochemical noise monitoring of rapid electrode processes 1.6 Issues and difficulties in traditional electrochemical methods Chapter II. Probing Electrode Inhomogeneity, Electrochemical Heterogeneity and Localized Corrosion 2.1 Probing electrode inhomogeneity 2.2 Probing electrochemical heterogeneity and localized corrosion 2.3 Overview of various techniques for probing localized corrosion Chapter III. Visualizing Localized Corrosion Using Electrochemically Integrated Multi-Electrode Arrays 3.1 An electrochemically integrated multi-electrode array, the wire beam electrode 3.2 Visualizing the progression of localized corrosion in an Evans water drop 3.3 Visualizing localized corrosion in environments with ion concentration gradients 3.4 Visualizing localized corrosion by the WBE in conjunction with scanning probes Chapter IV. Measuring Thermodynamic and Kinetic Parameters from Localized Corrosion Processes 4.1 Methods of probing localized corrosion thermodynamics and kinetics 4.2 Measuring localized corrosion using the overpotential-galvanic current method 4.3 Measuring localized corrosion using the galvanic current method 4.4 Measuring localized corrosion using the Rn-WBE method Chapter V. Characterizing Inhomogeneity and Localised Corrosion on Coated Electrode Surfaces 5.1 Characterising inhomogeneities in organic coatings and inhibitor films 5.2 Characterising inhomogeneity in organic coatings using the WBE method 5.3 The effects of coating inhomogeneity on electrochemical measurement 5.4 Visualisng underfilm corrosion and the effects of cathodic protection 5.5 Studying corrosion protection by coatings and cathodic protection Chapter VI. Designing Experiments for Studying Localized Corrosion and Its Inhibition in Inhomogeneous Media 6.1 Basic issues in localized corrosion and inhibitor test design 6.2 Fundamental considerations in selecting corrosion measurement techniques 6.3 Designing corrosion tests in highly-resistive and inhomogeneous media 6.4 Case studies: Designing crevice corrosion tests by means of the WBE 6.5 Case study: Designing experiments for localized corrosion inhibitor discovery Chapter VII. Sensing Localized Electrodeposition and Electrodissolution 7.1 Experimental methods for sensing localized electrodeposition and dissolution 7.2 Sensing localized electrodeposition using the WBE 7.3 Sensing localized electrodissolution using the WBE 7.4 Sensing nonuniform electrochemical deposition of organic coatings Chapter VIII. Versatile Heterogeneous Electrode Processes 8.1 Scanning and modeling various heterogeneous electrode processes 8.2 Electrochemical noise generation from electrochemical heterogeneity 8.3 Harvesting electrical power from electrochemical using the WBE 8.4 Further research issues on electrochemical heterogeneity.
Record Nr. UNINA-9910813203503321
Tan Yongjun <1963->  
Hoboken, N.J., : Wiley, 2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
High temperature experiments in chemistry and materials science [[electronic resource] /] / Ketil Motzfeldt
High temperature experiments in chemistry and materials science [[electronic resource] /] / Ketil Motzfeldt
Autore Motzfeldt Keith
Pubbl/distr/stampa Chichester, West Sussex, U.K., : John Wiley & Sons Inc., 2013
Descrizione fisica 1 online resource (350 p.)
Disciplina 541.3687
541.3687078
541/.3687078
Soggetto topico High temperature chemistry - Experiments
Materials at high temperatures - Experiments
ISBN 1-118-45779-X
1-299-18829-X
1-118-45777-3
1-118-45778-1
Classificazione SCI013050
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Machine generated contents note: Foreword vii Preface ix 1 Introduction to High-Temperature Research 1 2 Basic Design of Laboratory Furnaces 11 3 Temperature Measurements 55 4 Radiation Pyrometry 93 5 Refractory Materials in the Laboratory 129 6 Vacuum in Theory and Practice 177 7 High-Temperature Furnaces and Thermobalances 229 8 The Summing Up 267 Author Index 317 Subject Index 000.
Record Nr. UNINA-9910141483503321
Motzfeldt Keith  
Chichester, West Sussex, U.K., : John Wiley & Sons Inc., 2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
High temperature experiments in chemistry and materials science [[electronic resource] /] / Ketil Motzfeldt
High temperature experiments in chemistry and materials science [[electronic resource] /] / Ketil Motzfeldt
Autore Motzfeldt Keith
Pubbl/distr/stampa Chichester, West Sussex, U.K., : John Wiley & Sons Inc., 2013
Descrizione fisica 1 online resource (350 p.)
Disciplina 541.3687
541.3687078
541/.3687078
Soggetto topico High temperature chemistry - Experiments
Materials at high temperatures - Experiments
ISBN 1-118-45779-X
1-299-18829-X
1-118-45777-3
1-118-45778-1
Classificazione SCI013050
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Machine generated contents note: Foreword vii Preface ix 1 Introduction to High-Temperature Research 1 2 Basic Design of Laboratory Furnaces 11 3 Temperature Measurements 55 4 Radiation Pyrometry 93 5 Refractory Materials in the Laboratory 129 6 Vacuum in Theory and Practice 177 7 High-Temperature Furnaces and Thermobalances 229 8 The Summing Up 267 Author Index 317 Subject Index 000.
Record Nr. UNINA-9910831034603321
Motzfeldt Keith  
Chichester, West Sussex, U.K., : John Wiley & Sons Inc., 2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
High temperature experiments in chemistry and materials science [[electronic resource] /] / Ketil Motzfeldt
High temperature experiments in chemistry and materials science [[electronic resource] /] / Ketil Motzfeldt
Autore Motzfeldt Keith
Pubbl/distr/stampa Chichester, West Sussex, U.K., : John Wiley & Sons Inc., 2013
Descrizione fisica 1 online resource (350 p.)
Disciplina 541.3687
541.3687078
541/.3687078
Soggetto topico High temperature chemistry - Experiments
Materials at high temperatures - Experiments
ISBN 1-118-45779-X
1-299-18829-X
1-118-45777-3
1-118-45778-1
Classificazione SCI013050
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Machine generated contents note: Foreword vii Preface ix 1 Introduction to High-Temperature Research 1 2 Basic Design of Laboratory Furnaces 11 3 Temperature Measurements 55 4 Radiation Pyrometry 93 5 Refractory Materials in the Laboratory 129 6 Vacuum in Theory and Practice 177 7 High-Temperature Furnaces and Thermobalances 229 8 The Summing Up 267 Author Index 317 Subject Index 000.
Record Nr. UNINA-9910841443403321
Motzfeldt Keith  
Chichester, West Sussex, U.K., : John Wiley & Sons Inc., 2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Impedance spectroscopy [[electronic resource] ] : applications to electrochemical and dielectric phenomena / / Vadim F. Lvovich
Impedance spectroscopy [[electronic resource] ] : applications to electrochemical and dielectric phenomena / / Vadim F. Lvovich
Autore Lvovich Vadim F. <1967->
Pubbl/distr/stampa Hoboken, N.J., : Wiley, c2012
Descrizione fisica 1 online resource (370 p.)
Disciplina 543/.4
Soggetto topico Impedance spectroscopy
Electrochemistry
ISBN 1-62198-219-X
1-280-88135-6
9786613722669
1-118-16409-1
1-118-16407-5
1-118-16410-5
Classificazione SCI013050
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Impedance Spectroscopy: Applications to Electrochemical and Dielectric Phenomena; Contents; Preface; 1. Fundamentals of electrochemical impedance spectroscopy; 1.1. Concept of complex impedance; 1.2. Complex dielectric, modulus, and impedance data representations; 1.3. Electrochemical experiment: charge and material transport; 1.4. Fundamental ambiguity of impedance spectroscopy analysis; 2. Graphical representation of impedance spectroscopy data; 2.1. Nyquist and Bode representation of complex impedance data for ideal electrical circuits; 2.2. Dielectric data representation
3. Equivalent-circuit elements and modeling of the impedance phenomenon3.1. Ideal circuit elements; 3.2. Nonideal circuit elements; 3.3. Circuit models for systems with two and more time constants; 4. Examples of ideal equivalent circuit models; 4.1. Basic R-C circuit; 4.2. Basic R|C circuit; 4.3 Randies RSOL- RCT\CDL circuit; 4.4. Debye dielectric relaxation (R1-C1)\C circuit; 5. Impedance representation of bulk-material and electrode processes; 5.1. Uncompensated impedance ZOHM; 5.2. Bulk-media impedance-RSOL, RBULK and CBUKL; 5.3. Electrochemical double-layer capacitance CDL
5.4. Electrochemical charge-transfer resistance RCT5.5. Electrochemical sorption impedance ZSORP; 5.6. Mass-transport impedance; 5.7. Mixed charge-transfer, homogeneous, and diffusion-controlled kinetics; 6. Distributed impedance models; 6.1. Distributed RBULK |CBULK - R|NT|CPEDL circuit model; 6.2. General impedance models for distributed electrode processes; 6.3. Identification of frequency ranges for conductivity and permittivity measurements; 7. Impedance analysis of complex systems; 7.1. Dielectric analysis of highly resistive composite materials with particle conduction
7.2. Dielectric analysis of ionic colloidal suspensions7.3. AC electrokinetics and dielectrophoretic spectroscopy of colloidal suspensions; 7.4. Specific adsorption and multistep heterogeneous kinetics; 7.5. Impedance kinetics studies on porous electrodes; 8. Impedance Instrumentation, testing, and data validation; 8.1. Impedance test equipment; 8.2. Single-sine impedance equipment-lock-in amplifier and frequency-response analyzer; 8.3. Multiple-sine impedance equipment; 8.4. Electrochemical cells; 8.5. Linearity, causality, stability, consistency, and error analysis of impedance measurements
8.6. Complex nonlinear least-squares regression fitting8.7. Practical approach to experimental impedance data collection and analysis; 9. Selected examples of impedance-analysis applications: electroactive polymer films; 9.1. The field of electroactive polymers; 9.2. Impedance analysis of electrochemically active polymer films; 9.3. EIS models of conducting polymer films; 9.4. The future of electroactive polymers; 10. Selected examples of EIS analysis applications: industrial colloids and lubricants; 10.1. The field of industrial colloids and lubricants
10.2. Physical and chemical properties of lubricants
Record Nr. UNINA-9910141268803321
Lvovich Vadim F. <1967->  
Hoboken, N.J., : Wiley, c2012
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Impedance spectroscopy [[electronic resource] ] : applications to electrochemical and dielectric phenomena / / Vadim F. Lvovich
Impedance spectroscopy [[electronic resource] ] : applications to electrochemical and dielectric phenomena / / Vadim F. Lvovich
Autore Lvovich Vadim F. <1967->
Pubbl/distr/stampa Hoboken, N.J., : Wiley, c2012
Descrizione fisica 1 online resource (370 p.)
Disciplina 543/.4
Soggetto topico Impedance spectroscopy
Electrochemistry
ISBN 1-62198-219-X
1-280-88135-6
9786613722669
1-118-16409-1
1-118-16407-5
1-118-16410-5
Classificazione SCI013050
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Impedance Spectroscopy: Applications to Electrochemical and Dielectric Phenomena; Contents; Preface; 1. Fundamentals of electrochemical impedance spectroscopy; 1.1. Concept of complex impedance; 1.2. Complex dielectric, modulus, and impedance data representations; 1.3. Electrochemical experiment: charge and material transport; 1.4. Fundamental ambiguity of impedance spectroscopy analysis; 2. Graphical representation of impedance spectroscopy data; 2.1. Nyquist and Bode representation of complex impedance data for ideal electrical circuits; 2.2. Dielectric data representation
3. Equivalent-circuit elements and modeling of the impedance phenomenon3.1. Ideal circuit elements; 3.2. Nonideal circuit elements; 3.3. Circuit models for systems with two and more time constants; 4. Examples of ideal equivalent circuit models; 4.1. Basic R-C circuit; 4.2. Basic R|C circuit; 4.3 Randies RSOL- RCT\CDL circuit; 4.4. Debye dielectric relaxation (R1-C1)\C circuit; 5. Impedance representation of bulk-material and electrode processes; 5.1. Uncompensated impedance ZOHM; 5.2. Bulk-media impedance-RSOL, RBULK and CBUKL; 5.3. Electrochemical double-layer capacitance CDL
5.4. Electrochemical charge-transfer resistance RCT5.5. Electrochemical sorption impedance ZSORP; 5.6. Mass-transport impedance; 5.7. Mixed charge-transfer, homogeneous, and diffusion-controlled kinetics; 6. Distributed impedance models; 6.1. Distributed RBULK |CBULK - R|NT|CPEDL circuit model; 6.2. General impedance models for distributed electrode processes; 6.3. Identification of frequency ranges for conductivity and permittivity measurements; 7. Impedance analysis of complex systems; 7.1. Dielectric analysis of highly resistive composite materials with particle conduction
7.2. Dielectric analysis of ionic colloidal suspensions7.3. AC electrokinetics and dielectrophoretic spectroscopy of colloidal suspensions; 7.4. Specific adsorption and multistep heterogeneous kinetics; 7.5. Impedance kinetics studies on porous electrodes; 8. Impedance Instrumentation, testing, and data validation; 8.1. Impedance test equipment; 8.2. Single-sine impedance equipment-lock-in amplifier and frequency-response analyzer; 8.3. Multiple-sine impedance equipment; 8.4. Electrochemical cells; 8.5. Linearity, causality, stability, consistency, and error analysis of impedance measurements
8.6. Complex nonlinear least-squares regression fitting8.7. Practical approach to experimental impedance data collection and analysis; 9. Selected examples of impedance-analysis applications: electroactive polymer films; 9.1. The field of electroactive polymers; 9.2. Impedance analysis of electrochemically active polymer films; 9.3. EIS models of conducting polymer films; 9.4. The future of electroactive polymers; 10. Selected examples of EIS analysis applications: industrial colloids and lubricants; 10.1. The field of industrial colloids and lubricants
10.2. Physical and chemical properties of lubricants
Record Nr. UNINA-9910810255303321
Lvovich Vadim F. <1967->  
Hoboken, N.J., : Wiley, c2012
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Ionic liquids uncoiled [[electronic resource] ] : critical expert overviews / / edited by Natalia V. Plechkova, Kenneth R. Seddon
Ionic liquids uncoiled [[electronic resource] ] : critical expert overviews / / edited by Natalia V. Plechkova, Kenneth R. Seddon
Pubbl/distr/stampa Hoboken, N.J., : Wiley, 2013
Descrizione fisica 1 online resource (435 p.)
Disciplina 541/.3723
Altri autori (Persone) PlechkovaNatalia V
SeddonKenneth R. <1950->
Soggetto topico Ionic solutions
Ionic structure
ISBN 1-118-43500-1
1-118-43498-6
1-283-73557-1
1-118-43762-4
Classificazione SCI013050
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Title page; Copyright page; Contents; Coil Conferences; Preface; Acknowledgements; Contributors; Abbreviations; 1: Electrodeposition from Ionic Liquids: Interface Processes, Ion Effects, and Macroporous Structures; 1.1 Introduction; 1.2 Results and Discussion; 1.2.1 Purity Issues; 1.2.2 Interfacial Layers and Scanning Probe Microscopy Studies; 1.2.3 HOPG/[C4mpyr][NTf2]; 1.2.4 Au(111)/[C6mim][FAP]; 1.2.5 Au(111)/[C4mpyr][FAP]; 1.2.6 Influence of the Cation on Aluminium Deposition; 1.2.7 Challenges in the Making of Macroporous Materials; 1.3 Conclusion; References
2: Interfaces of Ionic Liquids (1)2.1 Introduction; 2.2 Liquid/Vacuum and Liquid/Gas Interfaces; 2.3 Liquid/Liquid Interfaces; 2.4 Solid/Liquid and Electrified Solid/Ionic Fluid Interfaces; 2.5 Wetting and Electrowetting Characteristics; 2.6 Summary and Conclusions; Acknowledgements; References; 3: Interfaces of Ionic Liquids (2); 3.1 Introduction; 3.2 The Solid-Ionic Liquid Interface; 3.2.1 Pure Interfaces; 3.2.2 Mica-Ionic Liquid Interfaces; 3.2.3 Sapphire-Ionic Liquid Interfaces; 3.2.4 Silica-Ionic Liquid Interfaces; 3.2.5 Graphite-Ionic Liquid Interfaces
3.2.6 Gold-Ionic Liquid Interfaces 3.2.7 Adsorption at the Solid-Ionic Liquid Interface; 3.3 The Air-Ionic Liquid Interface; 3.3.1 Pure Interfaces; 3.3.2 Interfacial Layer; 3.3.3 Transition Zone Structure; 3.3.4 Relationship between Microscopic Structure of Air-Ionic Liquid Interfaces and Macroscopic Properties; 3.3.5 Surfactant Adsorption at Air-Ionic Liquid Interfaces; 3.4 Liquid-Ionic Liquid Interfaces; 3.4.1 Pure Interfaces; 3.4.2 Adsorption at Liquid-Ionic Liquid Interfaces and Microemulsions; 3.5 Future Directions; Acknowledgements; References; 4: Ionic Liquids in Separation Science
4.1 Brief History of the Development of Ionic Liquids and Polymeric Ionic Liquids in Separation Science 4.2 Ionic Liquids in Chromatographic and Electrophoretic Separations; 4.3 High Performance Liquid Chromatography; 4.4 Counter-Current Chromatography; 4.5 Ionic Liquids in Gas Chromatography; 4.6 Ionic Liquids in Super critical Fluid Chromatography; 4.7 Capillary Electrophoresis and Capillary Electrochromatography; 4.8 Planar Chromatography; 4.9 Summary and Future Directions; References; 5: Separation Processes with Ionic Liquids; 5.1 Introduction; 5.2 Liquid Separations
5.2.1 Liquid-Liquid Extraction 5.2.2 Metal Extraction; 5.2.3 Extraction of Aromatic Hydrocarbons; 5.2.4 Desulfurisation of Fuels; 5.2.5 Proteins; 5.3 Extractive Distillation; 5.3.1 Conventional Process; 5.3.2 Ionic Liquids in Extractive Distillation; 5.4 Combination of Separations in the Liquid Phase with Membranes; 5.5 Gas Separations; 5.5.1 Conventional Processes; 5.5.2 CO2 Separation with Standard Ionic Liquids; 5.5.3 CO2 Separation with Functionalised Ionic Liquids; 5.5.4 CO2 Separations with Ionic Liquid (Supported) Membranes; 5.5.5 Olefin/Paraffin Separations with Ionic Liquids
5.5.6 Conclusions
Record Nr. UNINA-9910141380003321
Hoboken, N.J., : Wiley, 2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Ionic liquids uncoiled [[electronic resource] ] : critical expert overviews / / edited by Natalia V. Plechkova, Kenneth R. Seddon
Ionic liquids uncoiled [[electronic resource] ] : critical expert overviews / / edited by Natalia V. Plechkova, Kenneth R. Seddon
Edizione [1st ed.]
Pubbl/distr/stampa Hoboken, N.J., : Wiley, 2013
Descrizione fisica 1 online resource (435 p.)
Disciplina 541/.3723
Altri autori (Persone) PlechkovaNatalia V
SeddonKenneth R. <1950->
Soggetto topico Ionic solutions
Ionic structure
ISBN 1-118-43500-1
1-118-43498-6
1-283-73557-1
1-118-43762-4
Classificazione SCI013050
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Title page; Copyright page; Contents; Coil Conferences; Preface; Acknowledgements; Contributors; Abbreviations; 1: Electrodeposition from Ionic Liquids: Interface Processes, Ion Effects, and Macroporous Structures; 1.1 Introduction; 1.2 Results and Discussion; 1.2.1 Purity Issues; 1.2.2 Interfacial Layers and Scanning Probe Microscopy Studies; 1.2.3 HOPG/[C4mpyr][NTf2]; 1.2.4 Au(111)/[C6mim][FAP]; 1.2.5 Au(111)/[C4mpyr][FAP]; 1.2.6 Influence of the Cation on Aluminium Deposition; 1.2.7 Challenges in the Making of Macroporous Materials; 1.3 Conclusion; References
2: Interfaces of Ionic Liquids (1)2.1 Introduction; 2.2 Liquid/Vacuum and Liquid/Gas Interfaces; 2.3 Liquid/Liquid Interfaces; 2.4 Solid/Liquid and Electrified Solid/Ionic Fluid Interfaces; 2.5 Wetting and Electrowetting Characteristics; 2.6 Summary and Conclusions; Acknowledgements; References; 3: Interfaces of Ionic Liquids (2); 3.1 Introduction; 3.2 The Solid-Ionic Liquid Interface; 3.2.1 Pure Interfaces; 3.2.2 Mica-Ionic Liquid Interfaces; 3.2.3 Sapphire-Ionic Liquid Interfaces; 3.2.4 Silica-Ionic Liquid Interfaces; 3.2.5 Graphite-Ionic Liquid Interfaces
3.2.6 Gold-Ionic Liquid Interfaces 3.2.7 Adsorption at the Solid-Ionic Liquid Interface; 3.3 The Air-Ionic Liquid Interface; 3.3.1 Pure Interfaces; 3.3.2 Interfacial Layer; 3.3.3 Transition Zone Structure; 3.3.4 Relationship between Microscopic Structure of Air-Ionic Liquid Interfaces and Macroscopic Properties; 3.3.5 Surfactant Adsorption at Air-Ionic Liquid Interfaces; 3.4 Liquid-Ionic Liquid Interfaces; 3.4.1 Pure Interfaces; 3.4.2 Adsorption at Liquid-Ionic Liquid Interfaces and Microemulsions; 3.5 Future Directions; Acknowledgements; References; 4: Ionic Liquids in Separation Science
4.1 Brief History of the Development of Ionic Liquids and Polymeric Ionic Liquids in Separation Science 4.2 Ionic Liquids in Chromatographic and Electrophoretic Separations; 4.3 High Performance Liquid Chromatography; 4.4 Counter-Current Chromatography; 4.5 Ionic Liquids in Gas Chromatography; 4.6 Ionic Liquids in Super critical Fluid Chromatography; 4.7 Capillary Electrophoresis and Capillary Electrochromatography; 4.8 Planar Chromatography; 4.9 Summary and Future Directions; References; 5: Separation Processes with Ionic Liquids; 5.1 Introduction; 5.2 Liquid Separations
5.2.1 Liquid-Liquid Extraction 5.2.2 Metal Extraction; 5.2.3 Extraction of Aromatic Hydrocarbons; 5.2.4 Desulfurisation of Fuels; 5.2.5 Proteins; 5.3 Extractive Distillation; 5.3.1 Conventional Process; 5.3.2 Ionic Liquids in Extractive Distillation; 5.4 Combination of Separations in the Liquid Phase with Membranes; 5.5 Gas Separations; 5.5.1 Conventional Processes; 5.5.2 CO2 Separation with Standard Ionic Liquids; 5.5.3 CO2 Separation with Functionalised Ionic Liquids; 5.5.4 CO2 Separations with Ionic Liquid (Supported) Membranes; 5.5.5 Olefin/Paraffin Separations with Ionic Liquids
5.5.6 Conclusions
Record Nr. UNINA-9910814588203321
Hoboken, N.J., : Wiley, 2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
A matter of density : exploring the electron density concept in the chemical, biological, and materials sciences / / edited by N. Sukumar
A matter of density : exploring the electron density concept in the chemical, biological, and materials sciences / / edited by N. Sukumar
Pubbl/distr/stampa Hoboken, New Jersey : , : Wiley, , 2013
Descrizione fisica x, 318 p., [24] p. of plates : ill. (some col.)
Disciplina 539.7/2112
Soggetto topico Electron distribution
Soggetto genere / forma Electronic books.
ISBN 1-283-60878-2
1-118-43174-X
9786613921239
1-118-43171-5
1-118-43172-3
Classificazione SCI013050
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910208822103321
Hoboken, New Jersey : , : Wiley, , 2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui