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Electroanalysis at the Nanoscale: Faraday Discussion 164 [Hardcover]

Item : Electroanalysis at the Nanoscale: Faraday Discussion 164 [Hardcover]
Price : $250.99 (see below)
Category : Books
ISBN-10 ISBN-10 : 184973691X
ISBN-13 ISBN-13 : 9781849736916
Publisher Publisher : Royal Society of Chemistry
Pages Pages : 448
Binding Binding : Hardcover
Item ID : 100398554

The classical field of electroanalysis is emerging as a new and exciting tool in the 21st century. The characterisation, detection and theoretical behaviour of ions and electrons at the nanoscale is a growth area, of immense interest in the diverse fields of science and technology ranging from biological applications, fuel cells, surface and materials characterisation to sensing. Electrochemistry at the nanoscale is closely linked to interfacial chemistry at the solid-liquid, liquid-liquid phases, material sciences and condensed matter physics. The paradigm shift in electrochemistry started in the 1980s with development of new trends such as structured micro and nano-electrodes allowing atomic scale and dynamic investigations. Enabling in-situ techniques such as Scanning Electrochemical Microscopy combined with AFM, spectro-electrochemical methods together with advanced theoretical calculations using DFT and Monte Carlo simulations have revolutionised the field. Mention should also be made of nano-materials e.g. based on CNTs, graphene, TiO2 and other metal oxides.Introductory Lecture; Session 1: Bioelectroanalysis; Microelectrochemical visualization of oxygen consumption of single living cells; Vesicular release of neurotransmitters:converting amperometric measurements into size, dynamics and energetics of initial fusion pores; Potential-dependent single molecule blinking dynamics for flavin adenine dinucleotide covalently immobilized in zero-mode waveguide array of working electrodes; Networks of DNA-templated palladium nanowires:structural and electrical characterisation and their use as hydrogen gas sensors;Session 2: Nanomaterial platforms; Anodic TiO2 nanotubes: double walled vs. single walled; The simplest model of charge storage in single file metallic nanopores; Carbon nanotube based electrochemical sensor for the sensitive detection of valacyclovire; Electroanalysis using modified hierarchical nanoporous carbon materials; Pd-Au core-shell nanocrystals withlS=

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