《材料化學(xué)(原著第2版)》與其獲得美國教材與作者協(xié)會(huì)(Text and Academic Authors Association,TAA)頒發(fā)的2008年度最佳教科書獎(jiǎng)的第1版相比,內(nèi)容有所加強(qiáng)。第2版從結(jié)構(gòu)-特性處理的角度出發(fā),探討了無機(jī)、有機(jī)、納米材料等課題,在廣度和深度上基本涵蓋了當(dāng)今飛速發(fā)展的材料科學(xué)領(lǐng)域。第2版自始至終為讀者繼續(xù)呈現(xiàn)突破創(chuàng)新和實(shí)際應(yīng)用的視角。在扼要地定義材料化學(xué)和其發(fā)展史之后,全書7章逐一討論了固態(tài)化學(xué)、金屬、半導(dǎo)體材料、有機(jī)“軟”材料,納米材料和材料的性能等內(nèi)容。第2版得到了全新的升級(jí)和擴(kuò)展,例如,新增加“軟平版印刷術(shù)”模型、“點(diǎn)擊化學(xué)”聚合反應(yīng)、納米毒性、石墨烯以及許多生物材料應(yīng)用等內(nèi)容,特別是聚合物和“軟”材料部分得到了更大的補(bǔ)充。每一章直至每一節(jié)都詳細(xì)地描述了重要材料的實(shí)際應(yīng)用,輔以精選的問題耐人尋味。附錄同樣精彩——不但提供了最新的材料合成實(shí)驗(yàn)室方法,而且列舉了比較重要的材料的發(fā)現(xiàn)時(shí)間表?!恫牧匣瘜W(xué)(原著第2版)》特別適合化學(xué)、物理和工程專業(yè)的本科生和研究生閱讀,對(duì)于從事工業(yè)研究的相關(guān)技術(shù)人員同樣具存較高的參考價(jià)值。全新修訂,更新和擴(kuò)展的新版本,囊括眾多插圖和圖形,輔以最新參考文獻(xiàn)和實(shí)例,每章配有“進(jìn)一步討論”,使思考更加深入,提供實(shí)驗(yàn)室合成多種多樣的材料的方法,增加納米毒性、氣相生長(zhǎng)O-維納米結(jié)構(gòu),石墨烯等新章節(jié),突出“點(diǎn)擊化學(xué)”聚合反應(yīng)、硅酮、導(dǎo)電聚合物和生物材料應(yīng)用,討論新興領(lǐng)域——“軟平版印刷術(shù)”模型。
作者簡(jiǎn)介
暫缺《材料化學(xué)(第2版)》作者簡(jiǎn)介
圖書目錄
Preface Chapter 1 WHAT IS MATERIALS CHEMISTRY? 1.1 HISTORICAL PERSPECTIVES 1.2 CONSIDERATIONS IN THE DESIGN OF NEW MATERIALS 1.3 DESIGN OF NEW MATERIALS THROUGH A CRITICAL THINKING APPROACH Chapter 2 SOLID-STATE CHEMISTRY 2.1 AMORPHOUS VS. CRYSTALLINE SOLIDS 2.2 TYPES OF BONDING IN SOLIDS 2.2.1 Ionic Solids 2.2.2 Metallic Solids 2.2.3 Covalent Network Solids 2.2.4 Molecular Solids 2.3 THE CRYSTALLINE STATE 2.3.1 Crystal Growth Techniques 2.3.2 Crystal Structures 2.3.3 Crystal Symmetry and Space Groups 2.3.4 X-Ray Diffraction from Crystalline Solids 2.3.5 Crystal Imperfections 2.3.6 Physical Properties of Crystals 2.3.7 Bonding in Crystalline Solids: Introduction to Band Theory 2.4 THE AMORPHOUS STATE 2.4.1 Sol-Gel Processing 2.4.2 Glasses 2.4.3 Cementitious Materials 2.4.4 Ceramics Chapter 3 METALS 3.1 MINING AND PROCESSING OF METALS 3.1.1 Powder Metallurgy 3.2 METALLIC STRUCTURES AND PROPERTIES 3.2.1 Phase Behavior of Iron-Carbon Alloys 3.2.2 Hardening Mechanisms of Steels 3.2.3 Stainless Steels 3.2.4 Nonferrous Metals and Alloys 3.3 METAL SURFACE TREATMENTS FOR CORROSION RESISTANCE 3.4 MAGNETISM 3.5 REVERSIBLE HYDROGEN STORAGE Chapter 4 SEMICONDUCTORS 4.1 PROPERTIES AND TYPES OF SEMICONDUCTORS 4.2 SILICON-BASED APPLICATIONS 4.2.1 Silicon Wafer Production 4.2.2 Integrated Circuits 4.3 LIGHT-EMITTING DIODES: THERE IS LIFE OUTSIDE OF SILICON! 4.4 THERMOELECTRIC (TE) MATERIALS Chapter 5 POLYMERIC MATERIALS 5.1 POLYMER CLASSIFICATIONS AND NOMENCLATURE 5.2 POLYMERIZATION MECHANISMS 5.2.1 Addition Polymerization 5.2.2 Heterogeneous Catalysis 5.2.3 Homogeneous Catalysis 5.2.4 Step-Growth Polymerization 5.2.5 Dendritic Polymers 5.2.6 Polymerization via "Click" Chemistry 5.3 "SOFT MATERIALS" APPLICATIONS:STRUCTURE VS. PROPERTIES 5.3.1 Biomatedals Applications 5.3.2 Conductive Polymers 5.3.3 Molecular Magnets 5.4 POLYMER ADDITIVES 5.4.1 Flame Retardants Chapter 6 NANOMATERIALS 6.1 NANOTOXICITY 6.2 WHAT IS NANOTECHNOLOGY? 6.3 NANOSCALE BUILDING BLOCKS AND APPLICATIONS …… Chapter 7 MATERIALS CHARACTERIZATION APPENDIX A APPENDIX B APPENDIX C Index