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Nanoscale Electrochemistry of Molecular Contacts (2018)

Nanoscale Electrochemistry of Molecular Contacts

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"Nanoscale Electrochemistry of Molecular Contacts" by Paulo Roberto Bueno is a physics book focused on Thermal Effects. Best for students, educators, and scientifically curious readers.

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.

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Best For: Researchers and students in nanotechnology, electrochemistry, and molecular electronics.
Focus: The integration of nanoscale electronics with electrochemistry, emphasizing electrochemical capacitance.
Covers: Fundamental principles of electrochemical capacitance and its role in molecular-scale electronic devices.
Why It Matters: Provides a foundational concept that bridges molecular electronics and electrochemistry, potentially advancing electronic device engineering at the nanoscale.

"Nanoscale Electrochemistry of Molecular Contacts" by Paulo Roberto Bueno is a physics book focused on Thermal Effects. Best for students, educators, and scientifically curious readers.

Topic: Thermal Effects

Author: Paulo Roberto Bueno

Who this is for:

  • Physics students
  • Science-minded readers
  • Readers building technical understanding

Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.

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.

AuthorPaulo Roberto Bueno
PublisherSpringer
Published2019-01-14
ISBN-139783319904863
BindingPaperback
Pages84
LanguageEnglish
SubjectsScience
TopicThermal Effects
SeriesSpringerbriefs in Applied Sciences and Technology

Format: Paperback

Length: 84 pages

Language: English

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