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Conducting Polymers with Micro or Nanometer Structure(國內(nèi)版)

Conducting Polymers with Micro or Nanometer Structure(國內(nèi)版)

定 價:¥60.00

作 者: 萬梅香 著
出版社: 清華大學(xué)出版社
叢編項:
標(biāo) 簽: 一般工業(yè)技術(shù)

ISBN: 9787302174769 出版時間: 2008-07-01 包裝: 精裝
開本: 32開 頁數(shù): 292 字?jǐn)?shù):  

內(nèi)容簡介

  導(dǎo)電聚合物打破了聚合物為絕緣體的傳統(tǒng)觀念,因而被稱為“第四代聚合物”。它既具有金屬和半導(dǎo)體的導(dǎo)電特性,又保留了聚合物的輕質(zhì)、柔性和可加工的特色。這種材料在光電子器件、傳感技術(shù)、分子電子學(xué)和納米器件以及驅(qū)動器件等方面具有潛在的應(yīng)用前景。本書比較完整、系統(tǒng)地介紹了導(dǎo)電聚合物的緣起、摻雜與導(dǎo)電機(jī)制、結(jié)構(gòu)與性能、技術(shù)應(yīng)用前景以及研究進(jìn)展,特別介紹了作者采用無模板自組裝方法在微納米結(jié)構(gòu)的導(dǎo)電聚合物的研究及其應(yīng)用方面的學(xué)術(shù)貢獻(xiàn)。本書的內(nèi)容分為5章:第1章,導(dǎo)論;第2章,優(yōu)異的導(dǎo)電聚苯胺;第3章,導(dǎo)電聚合物的物理特性及其應(yīng)用;第4章,導(dǎo)電聚合物的微納米結(jié)構(gòu);第5章,無模板法自組裝導(dǎo)電聚合物的微納米結(jié)構(gòu)。為了便于讀者閱讀,作者還特別給出了名詞解釋。本書適合高校和科研院所的化學(xué)、化工、物理及材料專業(yè)的研究人員、教師和研究生閱讀參考。

作者簡介

暫缺《Conducting Polymers with Micro or Nanometer Structure(國內(nèi)版)》作者簡介

圖書目錄

Chapter I Introduction of Conducting Polymers
 1.1 Discovery of Conducting Polymers
 1.2 Structural Characteristics and Doping Concept
 1.3 Charge Carriers and Conducting Mechanism
 References
Chapter 2 Polyaniline as A Promising Conducting Polymer
 2.1 Molecular Structure and Proton Doping
 2.2 Synthesis Method
  2.2.1 Chemical Method
  2.2.2 Electro-Chemical Method
  2.2.3 Mechano-Chemical Route
 2.3 Physical Properties .
  2.3.1 Nonlinear Optical (NLO)
  2.3.2 Electrical and Charge Transport Properties
  2.3.3 Magnetic Properties
  2.3.4 Other Properties
 2.4 Solubility and Processability
  2.4.1 Solubility
  2.4.2 Processability
 References
Chapter 3 Physical Properties and Associated Applications of Conducting Polymers
 3.1 Electronic Devices
  3.1.1 Light Emitting Diodes (LEDs)
  3.1.2 Solar Cells
 3.2 EMI Shielding and Microwave Absorbing Materials
  3.2.1 EMI Shielding Materials
  3.2.2 Microwave Absorption Materials (Stealth Materials)
 3.3 Rechargeable Batteries and Supercapacitors
  3.3.1 Rechargeable Batteries
  3.3.2 Supercapacitors
 3.4 Sensors
 3.5 Electrochromic Devices and Artificial Muscles
  3.5.1 Electrochromic Devices
  3.5.2 Conducting Polymer-Based Artificial Muscles
 3.6 Others
  3.6.1 Corrosion Materials
  3.6.2 Electrostatic Dissipation Materials
  3.6.3 Separated Membrane
  3.6.4 Conducting Textiles
 References
Chapter 4 Conducting Polymer Nanostructures
 4.1 Synthetic Method and Formation Mechanism
  4.1.1 Hard Template Method
  4.1.2 Soft Template Method
  4.1.3 Other Methods
  4.1.4 PEDOT Nanostructures
 4.2 Composite Nanostructures
  4.2.1 Metal-Conducting Polymer Composite Nanostructures
  4.2.2 Conducting Polymer/Carbon Nanotube Composites
  4.2.3 Core-Shell Composites
  4.2.4 Chiral and Biological Composite Nanostructures
  4.2.5 Inorganic Oxide Nano-Crystals and CP Composites
 4.3 Physical Properties and Potential Application
  4.3.1 Electrical and Transport Properties
  4.3.2 Potential Applications
  4.3.3 Nano-arrays or Nano-patents
 References
Chapter 5 Template-Free Method to Conducting Polymer MicrofNanostructures
 5.1 Template-Free Method
  5.1.1 Discovery of Template-Free Method
  5.1.2 Universality of Template-Free Method
  5.1.3 Controllability of Morphology and Diameter by Template-Free Method
  5.1.4 Self-Assembly Mechanism of Micro/Nanostructures by A Template-Free Method
 5.2 Multi-Functionality of Micro/Nanostmctures Based on Template-Free Method
  5.2.1 Processing Composite Nanostructures
  5.2.2 PPy-CNT Composite Nanostructures
  5.2.3 Electro-Magnetic Functional Micro/Nanostructures
  5.2.4 Electro-Optic Micro/Nanostructures
 ……
Appendix Term Definitions

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