Corona Discharge Micromachining for the Synthesis of Nanoparticles : Characterization and Applications. (Arquivo de computador, 2019) [MIT Libraries]
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Corona Discharge Micromachining for the Synthesis of Nanoparticles : Characterization and Applications.

Corona Discharge Micromachining for the Synthesis of Nanoparticles : Characterization and Applications.

Autor: Ranjeet Kumar Sahu; Somashekhar S Hiremath
Editora: Milton CRC Press LLC 2019
Edição/Formato   Arquivo de computador : InglêsVer todas as edições e formatos
Resumo:
Cover -- Half Title -- Title Page -- Copyright Page -- Contents -- Preface -- Notations -- 1: Introduction -- 1.1 Fundamentals of Nanoparticles -- 1.2 Classification of Nanoparticles -- 1.3 Overview of Application of Nanoparticles -- 1.4 Research on Nanoparticles -- 1.4.1 Review on Nanoparticles Synthesis -- 1.4.2 Review on Nanoparticles Stabilization and Application -- 1.5 Motivation -- 1.6 Methodology --  Ler mais...
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Detalhes

Tipo de Material: Recurso Internet
Tipo de Documento Recursos de internet, Arquivo de computador
Todos os Autores / Contribuintes: Ranjeet Kumar Sahu; Somashekhar S Hiremath
ISBN: 9781000065404 1000065405
Número OCLC: 1148161227
Descrição: 1 Online-Ressource (137 pages)
Conteúdos: Chapter 1. IntroductionChapter 2. Synthesis MethodsChapter 3. Diagnostic MethodsChapter 4. Novel Approach for Nanoparticle Synthesis: EDMM SystemChapter 5. Synthesis, Characterization, and Application Suitability

Resumo:

Cover -- Half Title -- Title Page -- Copyright Page -- Contents -- Preface -- Notations -- 1: Introduction -- 1.1 Fundamentals of Nanoparticles -- 1.2 Classification of Nanoparticles -- 1.3 Overview of Application of Nanoparticles -- 1.4 Research on Nanoparticles -- 1.4.1 Review on Nanoparticles Synthesis -- 1.4.2 Review on Nanoparticles Stabilization and Application -- 1.5 Motivation -- 1.6 Methodology -- References -- 2: Synthesis Methods -- 2.1 Introduction -- 2.2 Synthesis Methods -- 2.2.1 Mechanical Methods -- 2.2.1.1 Ball Milling Method -- 2.2.1.2 Lithography Method -- 2.2.2 Liquid Phase Reaction Methods -- 2.2.2.1 Solution Precipitation Method -- 2.2.2.2 Chemical Reduction Method -- 2.2.2.3 Sol-Gel Method -- 2.2.2.4 Electrochemical Method -- 2.2.2.5 Micro-Emulsion Method -- 2.2.2.6 Polyol Method -- 2.2.2.7 Boiling Flask-3-Neck Method -- 2.2.2.8 Microfluidic Reactor Method -- 2.2.3 Vapor Phase Reaction Methods -- 2.2.3.1 Wire Explosion Method -- 2.2.3.2 Pulsed Laser Ablation Method -- 2.2.3.3 Inert Gas Condensation Method -- 2.2.3.4 Sputtering Method -- 2.2.3.5 Chemical Vapor Condensation Method -- 2.2.3.6 Submerged Arc Synthesis Method -- 2.2.3.7 Combustion Flame Method -- 2.2.3.8 Plasma Processing Method -- 2.2.3.9 Aerosol Synthesis Method -- 2.2.3.10 Spray Pyrolysis Method -- 2.2.3.11 Solvated Metal Atom Dispersion Method -- 2.2.3.12 Corona Discharge Micromachining-Electrical Discharge Micromachining (EDMM) Method -- 2.3 Formulation of Colloids -- 2.4 Summary -- References -- 3: Diagnostic Methods -- 3.1 Introduction -- 3.2 Diagnostic Methods for Structural Characterization -- 3.2.1 Scanning Electron Microscopy (SEM) -- 3.2.2 Transmission Electron Microscopy (TEM) -- 3.2.3 Energy Dispersive Analysis by X-Rays (EDAX) -- 3.2.4 Selected Area Electron Diffraction (SAED) -- 3.2.5 X-Ray Diffraction (XRD).
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