Graphene – An Introduction to the Fundamentals and Industrial Applications

An Introduction to the Fundamentals and Industrial Applications

Specificaties
Gebonden, 320 blz. | Engels
John Wiley & Sons | e druk, 2015
ISBN13: 9781118842560
Rubricering
John Wiley & Sons e druk, 2015 9781118842560
Onderdeel van serie Advanced Material Series
€ 208,98
Levertijd ongeveer 15 werkdagen

Specificaties

ISBN13:9781118842560
Taal:Engels
Bindwijze:gebonden
Aantal pagina's:320

Inhoudsopgave

<p>Foreword (Hisanori Shinohara) xv</p>
<p>Preface xvii</p>
<p>1 The History of Graphene 1</p>
<p>2 Structure and Properties of Graphene 17</p>
<p>2.1 The Structure of Graphene 17</p>
<p>2.2 Disorder in Graphene Structure 25</p>
<p>2.3 Properties of Graphene 28</p>
<p>2.4 Summary 37</p>
<p>3 Nanographene and Carbon Quantum Dots (C–Dots) 39</p>
<p>3.1 Nanographene 40</p>
<p>3.2 Graphene Quantum Dots or Carbon Dots 46</p>
<p>3.3 Conclusions 71</p>
<p>4 Identification and Characterization of Graphene 73</p>
<p>4.1 Introduction 73</p>
<p>4.2 Microscopic Methods 76</p>
<p>4.3 Spectroscopic Methods 81</p>
<p>4.4 Optical Property Analysis 93</p>
<p>4.5 Measurement of Mechanical Properties 99</p>
<p>4.6 Thermal Properties and Thermal Effect Analysis 105</p>
<p>4.7 Characterization of Electrical Properties 108</p>
<p>4.8 Work Function 109</p>
<p>4.9 Anomolous Quantum Hall Effect 109</p>
<p>4.10 Spin Transport 110</p>
<p>4.11 Summary 111</p>
<p>5 Engineering Properties of Graphene 113</p>
<p>5.1 Introduction 113</p>
<p>5.2 Engineering Magnetic Properties 114</p>
<p>5.3 Engineering Graphene with Enhanced Mechanical Properties 115</p>
<p>5.4 Engineering the Field Emission (FE) Properties 119</p>
<p>5.5 Engineering Band Gap or Energy Gap of Graphene 120</p>
<p>5.6 Engineering the Electronic Properties of Graphene 122</p>
<p>5.7 Engineering Structural Properties of Graphene 132</p>
<p>5.8 Summary 142</p>
<p>6 Applications of Graphene 145</p>
<p>6.1 Application Possibilities 146</p>
<p>6.2 Summary 164</p>
<p>7 Towards Mass Production of Graphene: Lab to Industry (Scaling Up) 167</p>
<p>7.1 Exfoliation of Graphite: A Top–Down Approach 168</p>
<p>7.2 Length–Wise Unzipping of Carbon Nanotubes (CNT) 171</p>
<p>7.3 Chemical Vapor Deposition (CVD) Method 179</p>
<p>7.4 Epitaxial growth of Graphene on Silicon Carbide 181</p>
<p>7.5 Reduction of Graphene Oxide (GO) 184</p>
<p>7.6 Arc–Discharge Method 194</p>
<p>7.7 Solvothermal Method 194</p>
<p>7.8 Substrate–Free Gas Phase Synthesis Of Graphene 195</p>
<p>7.9 Other Growth Methods 196</p>
<p>7.10 Summary 196</p>
<p>8 Direct Transfer or Roll–To–Roll Transfer of Graphene Sheet onto Desired Substrate 197</p>
<p>8.1 Introduction 197</p>
<p>8.2 Direct Transfer of Graphene by Etching and Scooping Method 199</p>
<p>8.3 Direct Transfer of Graphene by Etching and Scooping Method Using a Graphene Protecting Media 200</p>
<p>8.4 Roll–to–Roll Synthesis and Transfer of Graphene 205</p>
<p>8.5 Apparatus Used for Roll–to–Roll Transfer of Graphene Sheet 208</p>
<p>8.6 Considerations for Minimizing Defects or Cracking During Transfer 212</p>
<p>8.7 Summary 214</p>
<p>9 Graphene in Industry, Commercialization Challenges and Economics 217</p>
<p>9.1 Introduction 217</p>
<p>9.2 Graphene Industries 219</p>
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        Graphene – An Introduction to the Fundamentals and Industrial Applications