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基于聚合物的多功能纳米复合材料(英文版)

基于聚合物的多功能纳米复合材料(英文版)

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作 者: 宋克男,刘春太,郭占虎 编
出版社: 高等教育出版社
丛编项:
标 签: 暂缺

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ISBN: 9787040525885 出版时间: 2019-09-01 包装: 精装
开本: 16开 页数: 328 字数:  

内容简介

  《基于聚合物的多功能纳米复合材料(英文版)》由国际专家研究小组编辑和撰写,整合了多功能纳米复合材料及其应用的基础知识、研究和开发的进展,以及由此产生的多功能聚合物及其纳米复合材料的多样性介绍。《基于聚合物的多功能纳米复合材料(英文版)》还详细介绍了结构纳米复合材料中多功能组合的广泛应用,包括运输工程、机械系统、航空航天制造、建筑材料、电气元件、生物医学设备以及光学组件等领域。

作者简介

  Kenan Song(宋克男),美国亚利桑那州立大学助理教授,重点研究领域为聚合物基纳米粒子填充复合材料的制造、表征、模拟和应用,感兴趣的研究方向为一维纳米管、二维纳米芯片以及零维纳米球等。申请美国专利1项,合作出版学术著作4部,在ACS Applied Materials&Interlaces、Carbon、Polymer等期刊发表论文13篇,目前为50多种学术期刊的评论员和编委。Chuntai Liu(刘春太),郑州大学教授,郑州大学橡塑模具国家工程研究中心常务副主任,广东轻工职业技术学院珠江学者讲席教授,全国模具标准化技术委员会主任委员,主要研究方向为高分子及其复合材料成型加工。发表SCI论文150余篇,曾获“中国载人航天工程突出贡献”奖励和国家科技进步二等奖2项。John Zhanhu Guo(郭占虎),美国田纳西大学诺克斯维尔分校副教授,ICL实验室主任,主要研究方向为纳米结构材料、聚合物纳米合成、纳米制造、超导聚合物纳米合成、环境可持续发展、能源效率提高等。担任国际学术期刊Advanced Composites and Hvbrid Materials主编、Engineerefl Science 执行主编以及多家国际学术期刊编委。

图书目录

Contributors
Preface
1.Nanoparticles and Nanocomposites With Microfluidic Technology
Zhenhao Tian, Xuehui Ge,Yujun Wang and Danhong Xu
1.1 Introduction
1.2 Microfluidic Platforms for Nanoparticles and Nanocomposites Synthesis
1.2.1 The Types and Fabrication Techniques of Microfluidic Platforms
1.2.2 Flow Patterns
1.3 Synthesis of Organic Nanoparticles by Microreactors
1.4 Synthesis of Inorganic Nanoparticles by Microreactor
1.4.1 MetaI Nanoparticles
1.4.2 Metal Oxide Nanoparticles
1.4.3 Quantum Dots
1.5 Inorganic Hybrid Nanoparticles and Nanocomposites
1.5.1 Metal Alloy Materials
1.5.2 Core-Shell Quantum Dots
1.6 Organic Hybrid Functional Nanoparticles Synthesis and Their Applications for Drug Delivery
1.7 Conclusions and Outlooks
Acknowledgements
References
2.Cluster Beam Synthesis of Polymer Composites
with Nanoparticles
Vladimir N.Popok
2.1 Introduction
2.1.1 Functionalities of Polymers with Nanoparticles
2.1.2 Synthesis of Polymers with NPs
2.2 Formation of Cluster Beams
2.2.1 Cluster Nucleation and Growth
2.2.2 Cluster Sources
2.3 Cluster Deposition/Embedment on/in Polymers
2.3.1 Fundamental Aspects of Nanoparticle Interaction
with Polymer Surfaces
2.3.2 Deposition and Implantation of Clusters
2.4 Properties of Polymer Composites With Nanoparticles
2.5 Applications of Nanocomposite Polymer Films
2.5.1 Formation of Electronic Components
2.5.2 Nanocomposites in Optics and Photovoltaics
2.5.3 Polymer Nanocomposites for Biological Applications
2.6 Conclusions
References
3.Thermal Conduction in Polymer Composites
Nitin Mehra, Liwen Mu, Tuo ji and jiahua Zhu
3.1 Introduction
3.2 Fundamentals of Phonon Transport in Solid Materials
3.3 Thermal Conduction in Polymers
3.3.1 Why Are Polymers Traditionally Called Thermal
Insulators?
3.3.2 Factors Playing a Critical Role in Thermal
Conduction in Polymers
3.4 Thermal Conduction in Polymer Composites
3.4.1 Challenges
3.4.2 Carbon Filler-Based Polymer Composites
3.4.3 Ceramic Filler-Based Polymer Composites
3.4.4 Metallic Filler-Based Polymer Composites
3.5 Strategies to Enhance Thermal Conduction
3.5.1 Filler Alignment
3.5.2 Filler Surface Modification
3.5.3 Hybrid Fillers
3.5.4 Other Strategies and Materials
3.6 Applications
3.7 Thermally Insulative Materials
3.8 Summaries and Outlooks
References
4.Epoxy-Based Multifunctional Nanocomposites
Khalid A.Askar and Kenan Song
4.1 Introduction
4.2 Composite Preparations
4.3 Mechanical Reinforcements
4.4 Wear Resistance
4.5 Self-Cleaning
4.6 Self-Healing
4.7 Conclusions
References
……
5.Self-Healing Fiber Composites With a Self-Pressurized Healing System
6.Multifunctional Nanocomposite Sensors for Environmental Monitorin
7.Nanocomposites for Biomedical Applications
8.Polymer-Based Nanocomposites with High Dielectric Permittivity
9.Proton-Conducting Materials Used as Polymer Electrolyte Membranes in Fuel Cells
10.Smart Adhesion Surfaces
11.Flame Retardancy of Wood-Polymeric Composites
Index

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