Nanoscale Electrochemistry of Molecular Contacts

This book discusses the merging of nanoscale electronics and electrochemistry and how this can potentially modernize the way electronic devices are currently engineered or constructed. It introduces the electrochemical capacitance as a fundamental missing concept that solves the puzzle between molecular electronics and electrochemistry at the nanoscale. The electrochemical capacitance, as a fundamental principle, is deduced from first principles quantum mechanics. The text also confirmed that faradaic and non-faradaic processes are only different physical approximations of the same sort of energetic phenomenon.The book comprises three chapters. Chapter one introduces the concepts of chemical capacitance, relaxation resistance, and the quantum resistive-capacitive circuit and demonstrates how these elements are translated to the electrochemistry context. In chapter two, the chemical capacitance, the fundamental concept and missing part of the puzzle that unity electronics and electrochemistry, is deduced from first principles of quantum mechanics. In chapter three, the concepts are practically used in different contexts that include molecular diagnostics, molecular conductance and super-capacitive phenomena is explained using the introduced basic principles.

Produk Detail:

  • Author : Paulo Roberto Bueno
  • Publisher : Springer
  • Pages : 84 pages
  • ISBN : 3319904876
  • Rating : 4/5 from 21 reviews
CLICK HERE TO GET THIS BOOKNanoscale Electrochemistry of Molecular Contacts

Nanoscale Electrochemistry

Nanoscale Electrochemistry
  • Author : Andrew J. Wain,Edmund J. F. Dickinson
  • Publisher : Elsevier
  • Release : 02 August 2021
GET THIS BOOKNanoscale Electrochemistry

Nanoscale Electrochemistry, Volume 20 focuses on the challenges and advances involved in electrochemical nanoscience at solid-liquid interfaces, highlighting the most recent developments. Nanotechnology has had a tremendous impact on the multidisciplinary field of electrochemistry, yielding new fundamental insights that have furthered our understanding of interfacial processes, thus stimulating new and diverse applications. Sections cover the principles of nanoscale electrochemical systems, emphasizing their unique behavior when compared to their macro/microscopic counterparts, present analytical applications such as sensing and bioelectrochemistry, and describe

Nanoscale Electrochemistry of Molecular Contacts

Nanoscale Electrochemistry of Molecular Contacts
  • Author : Paulo Roberto Bueno
  • Publisher : Springer
  • Release : 29 December 2018
GET THIS BOOKNanoscale Electrochemistry of Molecular Contacts

This book discusses the merging of nanoscale electronics and electrochemistry and how this can potentially modernize the way electronic devices are currently engineered or constructed. It introduces the electrochemical capacitance as a fundamental missing concept that solves the puzzle between molecular electronics and electrochemistry at the nanoscale. The electrochemical capacitance, as a fundamental principle, is deduced from first principles quantum mechanics. The text also confirmed that faradaic and non-faradaic processes are only different physical approximations of the same sort of

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  • Publisher : Springer Science & Business Media
  • Release : 21 July 2009
GET THIS BOOKElectrochemistry at the Nanoscale

For centuries, electrochemistry has played a key role in technologically important areas such as electroplating or corrosion. In recent decades, electrochemical methods are receiving increasing attention in important strongly growing fields of science and technology such as nanosciences (nanoelectrochemistry) and life-sciences (organic and biological electrochemistry). Characterization, modification and understanding of various electrochemical interfaces or electrochemical processes at the nanoscale, has led to a huge increase of the scientific interest in electrochemical mechanisms as well as of application of electrochemical methods

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Handbook of Electrochemistry
  • Author : Cynthia G. Zoski
  • Publisher : Elsevier
  • Release : 06 May 2021
GET THIS BOOKHandbook of Electrochemistry

Electrochemistry plays a key role in a broad range of research and applied areas including the exploration of new inorganic and organic compounds, biochemical and biological systems, corrosion, energy applications involving fuel cells and solar cells, and nanoscale investigations. The Handbook of Electrochemistry serves as a source of electrochemical information, providing details of experimental considerations, representative calculations, and illustrations of the possibilities available in electrochemical experimentation. The book is divided into five parts: Fundamentals, Laboratory Practical, Techniques, Applications, and Data.

Nanoelectrochemistry

Nanoelectrochemistry
  • Author : Michael V. Mirkin,Shigeru Amemiya
  • Publisher : CRC Press
  • Release : 27 March 2015
GET THIS BOOKNanoelectrochemistry

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 field—specifically, theories of electron transfer, transport, and double-layer processes at nanoscale electrochemical interfaces. The next

Nanostructured Materials in Electrochemistry

Nanostructured Materials in Electrochemistry
  • Author : Ali Eftekhari
  • Publisher : John Wiley & Sons
  • Release : 25 June 2008
GET THIS BOOKNanostructured Materials in Electrochemistry

Providing the unique and vital link between the worlds of electrochemistry and nanomaterials, this reference and handbook covers advances in electrochemistry through the nanoscale control of electrode structures, as well as advances in nanotechnology through electrochemical synthesis strategies. It demonstrates how electrochemical methods are of great scientific and commercial interest due to their low cost and high efficiency, and includes the synthesis of nanowires, nanoparticles, nanoporous and layered nanomaterials of various compositions, as well as their applications -- ranging from

Electrochemistry

Electrochemistry
  • Author : Jay D Wadhawan,Richard G Compton
  • Publisher : Royal Society of Chemistry
  • Release : 05 December 2013
GET THIS BOOKElectrochemistry

Approaching the literature in a subject such as electrochemistry can be daunting. Specialist Periodical Reports present comprehensive and critical reviews of the current literature, with contributions from across the globe, providing the reader with an informed digest of the most important research currently carried out in the field. Re-launched in 2012 with a new editorial team (Compton and Wadhawan), this latest volume covers a broad range of topics, all with an emphasis on the nano aspects of electrochemistry. Aside from the

Electrochemistry

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  • Author : Richard G. Compton,Jay Wadhawan
  • Publisher : Royal Society of Chemistry
  • Release : 05 December 2013
GET THIS BOOKElectrochemistry

This volume is a key reference in the field of electrochemistry, allowing the reader to easily become acquainted with the latest research and opinion.

Biosensors

Biosensors
  • Author : Toonika Rinken
  • Publisher : BoD – Books on Demand
  • Release : 24 September 2015
GET THIS BOOKBiosensors

Nowadays, the implementation of novel technological platforms in biosensor-based developments is primarily directed to the miniaturization of analytical systems and lowering the limits of detection. Rapid scientific and technological progress enables the application of biosensors for the online detection of minute concentrations of different chemical compounds in a wide selection of matrixes and monitoring extremely low levels of biomarkers even in living organisms and individual cells. This book, including 16 chapters, characterizes the present state of the art and prospective options

Physical Electrochemistry

Physical Electrochemistry
  • Author : Noam Eliaz,Eliezer Gileadi
  • Publisher : Wiley-VCH
  • Release : 19 November 2018
GET THIS BOOKPhysical Electrochemistry

This bestselling textbook on physical electrochemistry caters to the needs of advanced undergraduate and postgraduate students of chemistry, materials engineering, mechanical engineering, and chemical engineering. It is unique in covering both the more fundamental, physical aspects as well as the application-oriented practical aspects in a balanced manner. In addition it serves as a self-study text for scientists in industry and research institutions working in related fields. The book can be divided into three parts: (i) the fundamentals of electrochemistry; (ii)

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  • Author : Allen J. Bard,Michael V. Mirkin
  • Publisher : CRC Press
  • Release : 18 April 2001
GET THIS BOOKScanning Electrochemical Microscopy

Scanning Electrochemical Microscopy describes the theory and operating principles of scanning electrochemical microscopy (SECM), including instrumentation, tip preparation, imaging techniques and potentiometric probes. The book explores applications relevant to electron transfer reactions, reaction kinetics, chemical events at interfaces, biologica

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  • Author : Satyabrata Jit,Santanu Das
  • Publisher : Elsevier
  • Release : 09 May 2020
GET THIS BOOK2D Nanoscale Heterostructured Materials

2D Nanoscale Heterostructured Materials: Synthesis, Properties, and Applications assesses the current status and future prospects for 2D materials other than graphene (e.g., BN nanosheets, MoS2, NbSe2, WS2, etc.) that have already been contemplated for both low-end and high-end technological applications. The book offers an overview of the different synthesis techniques for 2D materials and their heterostructures, with a detailed explanation of the many potential future applications. It provides an informed overview and fundamentals properties related to the 2D Transition

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  • Author : Akira Fujishima,Yasuaki Einaga,Tate Narasinga Rao,Donald A. Tryk
  • Publisher : Elsevier
  • Release : 06 May 2021
GET THIS BOOKDiamond Electrochemistry

Diamond Electrochemistry has developed rapidly in recent years and is maturing with the development of many practical applications of diamond electrodes, which impact almost every aspect of electrochemistry from electroanalysis to electrolysis. Some of these are being commercialised, such as the diamond electrochemical detector for liquid chromatography and the large-scale diamond electrode for industrial wastewater treatment. Diamond Electrochemistry provides an overview of current research in Diamond Electrochemistry, as well as practical applications of diamond electrodes. With chapters written by experts

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  • Author : Oscar Alejandro Oviedo,Luis Reinaudi,Silvana Garcia,Ezequiel Pedro Marcos Leiva
  • Publisher : Springer
  • Release : 14 December 2015
GET THIS BOOKUnderpotential Deposition

With this volume, Ezequiel P. M. Leiva and co-authors fill a gap in the available literature, by providing a much-needed, comprehensive review of the relevant literature for electrochemists, materials scientists and energy researchers. For the first time, they present applications of underpotential deposition (UPD) on the nanoscale, such as nanoparticles and nanocavities, as well as for electrocatalysis. They also discuss real surface determinations and layer-by-layer growth of ultrathin films, as well as the very latest modeling approaches to UPD based

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  • Author : Masakazu Aono
  • Publisher : Springer Nature
  • Release : 02 March 2020
GET THIS BOOKAtomic Switch

Written by the inventors and leading experts of this new field, the book results from the International Symposium on “Atomic Switch: Invention, Practical use and Future Prospects” which took place in Tsukuba, Japan on March 27th - 28th, 2017. The book chapters cover the different trends from the science and technology of atomic switches to their applications like brain-type information processing, artificial intelligence (AI) and completely novel functional electronic nanodevices. The current practical uses of the atomic switch are also described.