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alexanderp金蟲(chóng) (著名寫(xiě)手)
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[交流]
【求助】碳管 入門(mén)教材
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麻煩問(wèn)下:本人研三,化合物半導(dǎo)體方向,博士準(zhǔn)備投身CNT 請(qǐng)推薦比較好的入門(mén)教材 當(dāng)當(dāng)上有如下書(shū)目: 1 碳納米管——從基礎(chǔ)到應(yīng)用,作 者:(法)洛伊斯(Loiseau,A.) 等編著 出 版 社:科學(xué)出版社 出版時(shí)間:2008-2-1 2 碳的納米形態(tài)及其應(yīng)用(導(dǎo)讀版) 作 者:(。┥硞悺〉戎 出 版 社:科學(xué)出版社 出版時(shí)間:2010-8-1 3 碳納米管及其相關(guān)結(jié)構(gòu)(英文版) 作 者:Peter J.F.Harris 著 出版時(shí)間:2004-11-1 出 版 社:世界圖書(shū)出版公司 4 碳納米管科學(xué):合成、性質(zhì)與應(yīng)用(導(dǎo)讀版) 作 者:(美)哈里斯 編著 出 版 社:科學(xué)出版社 出版時(shí)間:2010-9-1 或者有其他的請(qǐng)推薦,有金幣贈(zèng)送。 |
科研啊 努力啊 希望有用啊 |
» 搶金幣啦!回帖就可以得到:
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金蟲(chóng) (正式寫(xiě)手)
金蟲(chóng) (著名寫(xiě)手)
金蟲(chóng) (著名寫(xiě)手)
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編輯推薦 對(duì)于國(guó)內(nèi)的物理學(xué)工作者和青年學(xué)生來(lái)講,研讀國(guó)外優(yōu)秀的物理學(xué)著作是系統(tǒng)掌握物理學(xué)知識(shí)的一個(gè)重要手段。為了滿(mǎn)足國(guó)內(nèi)讀者對(duì)國(guó)外優(yōu)秀物理學(xué)著作的需求,科學(xué)出版社引進(jìn)了一批國(guó)外優(yōu)秀著作。本書(shū)便是其中的一部。該書(shū)介紹了碳的多態(tài)現(xiàn)象和相的微結(jié)構(gòu)、合成方法和生長(zhǎng)機(jī)制、結(jié)構(gòu)的電子顯微分析、分光鏡分析、電子結(jié)構(gòu)、輸運(yùn)性質(zhì)、納米管及其合成材料的力學(xué)性能和表面特性等內(nèi)容。 內(nèi)容簡(jiǎn)介 本書(shū)介紹了碳納米管的基礎(chǔ),并包括了最新的研究進(jìn)展和技術(shù)應(yīng)用前景。在每章的開(kāi)篇都是各個(gè)相關(guān)學(xué)科的導(dǎo)讀(包括物理學(xué)、化學(xué)和材料學(xué)),其后是對(duì)相關(guān)專(zhuān)題的詳細(xì)討論。主要內(nèi)容有:碳的多態(tài)現(xiàn)象和相的微結(jié)構(gòu),合成方法和生長(zhǎng)機(jī)制,結(jié)構(gòu)的電子顯微分析,分光鏡分析,電子結(jié)構(gòu),輸運(yùn)性質(zhì),納米管及其合成材料的力學(xué)性能和表面特性。本書(shū)兼顧實(shí)驗(yàn)和計(jì)算,可供從事碳納米管研究的科研人員和學(xué)生參考。 目錄 1 Polymorphism and Structure of Carbons P. Delhaes, J.P. Issi, S. Bonnamy and P. Launois 1.1 Historical Introduction 1.2 Polymorphism of Crystalline Phases 1.3 Non-Crystalline Carbons 1.4 Transport Properties 1.5 Doped Carbons and Parent Materials 1.6 Conclusion References 2 Synthesis Methods and Growth Mechanisms A. Loiseau, X. Blase, J.-Ch. Charlier, P. GadeUe, C. Journet,Ch. Laurent and A. Peigney 2.1 Introduction 2.2 High-Temperature Methods for the Synthesis of Carbon and Boron Nitride MWNTs and SWNTs 2.3 Catalytic CVD Growth of Filamentous Carbon 2.4 Synthesis of MWNT and SWNT via Medium-Temperature Routes.. 2.5 Nucleation and Growth of C-SWNT 2.6 Growth Mechanisms for Carbon Nanotubes: Numerical Modelling .. 2.7 BxCyNz Composite Nanotubes References 3 Structural Analysis by Elastic Scattering Techniques Ph. Lambin, A. Loiseau, M. Monthioux and J. Thibault 3.1 Basic Theories 3.2 Analysis of Graphene-Based Structures with HREM 3.3 Analysis of Nanotube Structures with Diffraction and HREM 3.4 Analysis of the Nanotube Structure with STM References 4 Electronic Structure F. Ducastelle, X. Blase, J.-M. Bonard, J.-Ch. Charlier and P. Petit... 4.1 Electronic Structure: Generalities 4.2 Electronic Properties of Carbon Nanotubes 4.3 Non-Carbon Nanotubes 4.4 Monitoring the Electronic Structure of SWNTs by Intercalation and Charge Transfer 4.5 Field Emission References 5 Spectroscopies on Carbon Nanotubes J.-L. Sauvajol, E. Anglaret, S. Rols and O. Stephan 5.1 Vibrational Spectroscopies 5.2 Electron Energy-Loss Spectroscopy 5.3 Raman Spectroscopy of Carbon Nanotubes 5.4 Applications of EELS to Nanotubes References 6 Transport Properties S. Roche, E. Akkermans, O. Chauvet, F. Hekking, J.-P. Issi, R. Martel,G. Montambaux and Ph. Poncharal 6.1 Quantum Transport in Low-dimensional Materials 6.2 Quantum Transport in Disordered Conductors 6.3 An Interaction Effect: the Density-of-States Anomaly 6.4 Theory of Quantum Transport in Nanotubes 6.5 Measurement Techniques 6.6 The Case of Carbon Nanotube 6.7 Experimental Studies of Transport in Nanotubes and Electronic Devices 6.8 Transport in Nanotube Based Composites 6.9 Thermal Transport in Carbon Nanotubes References 7 Mechanical Properties of Individual Nanotubes and Composites J.-P. Salvetat, G. Desarmot, C. Gauthier and P. Poulin 7.1 Mechanical Properties of Materials, Basic Notions 7.2 Mechanical Properties of a Single Nanotube 7.3 Reinforcing Composite Materials with Nanotubes References 8 Surface Properties, Porosity, Chemical and Electrochemical Applications F. Beguin, E. Flahaut, A. Linares-Solano and J. Pinson 8.1 Surface Area, Porosity and Reactivity of Porous Carbons 8.2 Surface Functionality, Chemical and Electrochemical Reactivity of Carbons 8.3 Filling of CNTs and In-Situ Chemistry 8.4 Electrochemical Energy Storage using Carbon Nanotubes References Index http://product.dangdang.com/prod ... mp;ref=customer-0-B |
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