Description

Book Synopsis

Nanoscale electrochemistry has revolutionized electrochemical research and technologies and has made broad impacts in other fields, including nanotechnology and nanoscience, biology, and materials chemistry. Nanoelectrochemistry examines well-established concepts and principles and provides an updated overview of the field and its applications.

This book covers three integral aspects of nanoelectrochemistry. The first two chapters contain theoretical background, which is essential for everyone working in the fieldâspecifically, theories of electron transfer, transport, and double-layer processes at nanoscale electrochemical interfaces. The next chapters are dedicated to the electrochemical studies of nanomaterials and nanosystems, as well as the development and applications of nanoelectrochemical techniques. Each chapter is self-contained and can be read independently to provide readers with a compact, up-to-date critical review of the subfield of interest. At the same

Table of Contents

Theory of Nanoelectrochemistry. Electron Transfer in Nanoelectrochemical Systems. Electrochemical Double-Layer Effects on Electron Transfer and Ion Transport at the Nanoscale. Nanoelectrochemical Systems. Electrochemistry of Monolayer-Protected Clusters. Platinum-Monolayer Oxygen-Reduction Electrocatalysts: Present Status and Future Prospects. Photoelectrochemistry with Nanostructured Semiconductors. Single-Molecule Nanoelectronics. Electron Transport and Redox Reactions in Solid-State Molecular Electronic Devices. Stochastic Events in Nanoelectrochemical Systems. Nanoelectrochemistry of Carbon. Template-Directed Controlled Electrodeposition of Nanostructure and Composition. Nanopores and Nanoporous Membranes. Recent Investigations of Single Living Cells with Ultramicroelectrodes. Nanobioelectrochemistry: Proteins, Enzymes, and Biosensors. Electrode Array Probes of Exocytosis at Single-Cell Membranes and Exocytosis Measurements at Cell Biomimetic Systems. Nanoelectrochemical Methods. Nanoelectrodes and Liquid/Liquid Nanointerfaces. Microfabricated Electrochemical Systems. Electrodeposition at the Nanoscale. Scanning Electrochemical Microscopy of Nanopores, Nanocarbons, and Nanoparticles. Scanning Electrochemical Cell Microscopy: Mapping, Measuring, and Modifying Surfaces and Interfaces at the Nanoscale. In Situ Atomic Resolution Studies of the Electrode/Solution Interface by Electrochemical Scanning Tunneling Microscopy. Combined Atomic Force Microscopy–Scanning Electrochemical Microscopy. Nanoscale Potentiometry. Index.

Nanoelectrochemistry

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    A Hardback by Michael V. Mirkin, Shigeru Amemiya

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      Publisher: Taylor & Francis Inc
      Publication Date: Publication Date: 27/03/2015
      ISBN13: 9781466561199, 978-1466561199
      ISBN10: 146656119X

      Description

      Book Synopsis

      Nanoscale electrochemistry has revolutionized electrochemical research and technologies and has made broad impacts in other fields, including nanotechnology and nanoscience, biology, and materials chemistry. Nanoelectrochemistry examines well-established concepts and principles and provides an updated overview of the field and its applications.

      This book covers three integral aspects of nanoelectrochemistry. The first two chapters contain theoretical background, which is essential for everyone working in the fieldâspecifically, theories of electron transfer, transport, and double-layer processes at nanoscale electrochemical interfaces. The next chapters are dedicated to the electrochemical studies of nanomaterials and nanosystems, as well as the development and applications of nanoelectrochemical techniques. Each chapter is self-contained and can be read independently to provide readers with a compact, up-to-date critical review of the subfield of interest. At the same

      Table of Contents

      Theory of Nanoelectrochemistry. Electron Transfer in Nanoelectrochemical Systems. Electrochemical Double-Layer Effects on Electron Transfer and Ion Transport at the Nanoscale. Nanoelectrochemical Systems. Electrochemistry of Monolayer-Protected Clusters. Platinum-Monolayer Oxygen-Reduction Electrocatalysts: Present Status and Future Prospects. Photoelectrochemistry with Nanostructured Semiconductors. Single-Molecule Nanoelectronics. Electron Transport and Redox Reactions in Solid-State Molecular Electronic Devices. Stochastic Events in Nanoelectrochemical Systems. Nanoelectrochemistry of Carbon. Template-Directed Controlled Electrodeposition of Nanostructure and Composition. Nanopores and Nanoporous Membranes. Recent Investigations of Single Living Cells with Ultramicroelectrodes. Nanobioelectrochemistry: Proteins, Enzymes, and Biosensors. Electrode Array Probes of Exocytosis at Single-Cell Membranes and Exocytosis Measurements at Cell Biomimetic Systems. Nanoelectrochemical Methods. Nanoelectrodes and Liquid/Liquid Nanointerfaces. Microfabricated Electrochemical Systems. Electrodeposition at the Nanoscale. Scanning Electrochemical Microscopy of Nanopores, Nanocarbons, and Nanoparticles. Scanning Electrochemical Cell Microscopy: Mapping, Measuring, and Modifying Surfaces and Interfaces at the Nanoscale. In Situ Atomic Resolution Studies of the Electrode/Solution Interface by Electrochemical Scanning Tunneling Microscopy. Combined Atomic Force Microscopy–Scanning Electrochemical Microscopy. Nanoscale Potentiometry. Index.

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