Electronic Materials Science
暫譯: 電子材料科學
Eugene A. Irene
- 出版商: Wiley
- 出版日期: 2005-03-04
- 售價: $1,150
- 貴賓價: 9.8 折 $1,127
- 語言: 英文
- 頁數: 320
- 裝訂: Hardcover
- ISBN: 0471695971
- ISBN-13: 9780471695974
-
相關分類:
奈米科技 Nano、材料科學 Meterials、電子學 Eletronics
立即出貨 (庫存=1)
買這商品的人也買了...
-
$1,890$1,796 -
$1,805Test-Driven Development: By Example (Paperback)
-
$750$585 -
$420$332 -
$280$266 -
$1,102Unix Network Programming, Vol. 1 : The Sockets Networking API, 3/e (IE-Paperback)
-
$690$538 -
$1,080Windows System Programming, 3/e (Hardcover)
-
$780$663 -
$550$429 -
$550$435 -
$800$632 -
$800$632 -
$990$891 -
$490$387 -
$1,180$932 -
$320$250 -
$550$468 -
$620$527 -
$490$417 -
$480$374 -
$680$578 -
$490$387 -
$720$612 -
$520$411
商品描述
Description:
A thorough introduction to fundamental principles and applications
From its beginnings in metallurgy and ceramics, materials science now encompasses such high- tech fields as microelectronics, polymers, biomaterials, and nanotechnology. Electronic Materials Science presents the fundamentals of the subject in a detailed fashion for a multidisciplinary audience. Offering a higher-level treatment than an undergraduate textbook provides, this text benefits students and practitioners not only in electronics and optical materials science, but also in additional cutting-edge fields like polymers and biomaterials.
Readers with a basic understanding of physical chemistry or physics will appreciate the text's sophisticated presentation of today's materials science. Instructive derivations of important formulae, usually omitted in an introductory text, are included here. This feature offers a useful glimpse into the foundations of how the discipline understands such topics as defects, phase equilibria, and mechanical properties. Additionally, concepts such as reciprocal space, electron energy band theory, and thermodynamics enter the discussion earlier and in a more robust fashion than in other texts.
Electronic Materials Science also features:
- An orientation towards industry and academia drawn from the author's experience in both arenas
- Information on applications in semiconductors, optoelectronics, photocells, and nanoelectronics
- Problem sets and important references throughout
- Flexibility for various pedagogical needs
Treating the subject with more depth than any other introductory text, Electronic Materials Science prepares graduate and upper-level undergraduate students for advanced topics in the discipline and gives scientists in associated disciplines a clear review of the field and its leading technologies.
Table of Contents:
Preface.
1 Introduction to Electronic Materials Science.
1.1 Introduction.
1.2 Structure and Diffraction.
1.3 Defects.
1.4 Diffusion.
1.5 Phase Equilibria.
1.6 Mechanical Properties.
1.7 Electronic Structure.
1.8 Electronic Properties and Devices.
1.9 Electronic Materials Science.
2 Structure of Solids.
2.1 Introduction.
2.2 Order.
2.3 The Lattice.
2.4 Crystal Structure.
2.5 Notation.
2.6 Lattice Geometry.
2.7 The Wigner-Seitz Cell.
2.8 Crystal Structures.
Related Reading.
Exercises.
3 Diffraction.
3.1 Introduction.
3.2 Phase Difference and Bragg’s Law.
3.3 The Scattering Problem.
3.4 Reciprocal Space, RESP.
3.5 Diffraction Techniques.
3.6 Wave Vector Representation.
Related Reading.
Exercises.
4 Defects in Solids.
4.1 Introduction.
4.2 Why Do Defects Form?
4.3 Point Defects.
4.4 The Statistics of Point Defects.
4.5 Line Defects—Dislocations.
4.6 Planar Defects.
4.7 Three-Dimensional Defects.
Related Reading.
Exercises.
5 Diffusion in Solids.
5.1 Introduction to Diffusion Equations.
5.2 Atomistic Theory of Diffusion: Fick’s Laws and a Theory for the Diffusion Construct D.
5.3 Random Walk Problem.
5.4 Other Mass Transport Mechanisms.
5.5 Mathematics of Diffusion.
Related Reading.
Exercises.
6 Phase Equilibria.
6.1 Introduction.
6.2 The Gibbs Phase Rule.
6.3 Nucleation and Growth of Phases.
Related Reading.
Exercises.
7 Mechanical Properties of Solids—Elasticity.
7.1 Introduction.
7.2 Elasticity Relationships.
7.3 An Analysis of Stress by the Equation of Motion.
7.4 Hooke’s Law for Pure Dilatation and Pure Shear.
7.5 Poisson’s Ratio.
7.6 Relationships Among E, e, and v.
7.7 Relationships Among E, G, and n.
7.8 Resolving the Normal Forces.
Related Reading.
Exercises.
8 Mechanical Properties of Solids—Plasticity.
8.1 Introduction.
8.2 Plasticity Observations.
8.3 Role of Dislocations.
8.4 Deformation of Noncrystalline Materials.
Related Reading.
Exercises.
9 Electronic Structure of Solids.
9.1 Introduction.
9.2 Waves, Electrons, and the Wave Function.
9.3 Quantum Mechanics.
9.4 Electron Energy Band Representations.
9.5 Real Energy Band Structures.
9.6 Other Aspects of Electron Energy Band Structure.
Related Reading.
Exercises.
10 Electronic Properties of Materials.
10.1 Introduction.
10.2 Occupation of Electronic States.
10.3 Position of the Fermi Energy.
10.4 Electronic Properties of Metals: Conduction and Superconductivity.
10.5 Semiconductors.
10.6 Electrical Behavior of Organic Materials.
Related Reading.
Exercises.
11 Junctions and Devices and the Nanoscale.
11.1 Introduction.
11.2 Junctions.
11.3 Selected Devices.
11.4 Nanostructures and Nanodevices.
Index.
商品描述(中文翻譯)
**描述:**
對基本原則和應用的全面介紹
材料科學從冶金和陶瓷的起源開始,現在涵蓋了微電子學、聚合物、生物材料和納米技術等高科技領域。《電子材料科學》以詳細的方式呈現該主題的基本知識,適合多學科的讀者。這本書提供的內容比本科教科書更高層次,對電子學和光學材料科學的學生和從業者,以及聚合物和生物材料等其他前沿領域的專業人士都有益。
對於具備基本物理化學或物理知識的讀者,這本書對當今材料科學的精緻呈現將會受到讚賞。重要公式的推導通常在入門書中被省略,但在此書中都有所包含。這一特點提供了對該學科如何理解缺陷、相平衡和機械性質等主題的基礎的有用洞察。此外,互惠空間、電子能帶理論和熱力學等概念的討論比其他書籍更早且更深入。
《電子材料科學》還具有:
- 來自作者在工業和學術界的經驗的行業和學術導向
- 有關半導體、光電子學、光電池和納米電子學應用的信息
- 全書的問題集和重要參考文獻
- 針對各種教學需求的靈活性
這本書比其他任何入門書都更深入地探討該主題,為研究生和高年級本科生準備進入該學科的高級主題,並為相關學科的科學家提供該領域及其主要技術的清晰回顧。
**目錄:**
**前言**
**1 電子材料科學導論**
1.1 導論
1.2 結構與衍射
1.3 缺陷
1.4 擴散
1.5 相平衡
1.6 機械性質
1.7 電子結構
1.8 電子性質與器件
1.9 電子材料科學
**2 固體的結構**
2.1 導論
2.2 有序性
2.3 晶格
2.4 晶體結構
2.5 符號
2.6 晶格幾何
2.7 Wigner-Seitz單元
2.8 晶體結構
相關閱讀
練習
**3 衍射**
3.1 導論
3.2 相位差與布拉格定律
3.3 散射問題
3.4 互惠空間,RESP
3.5 衍射技術
3.6 波矢表示
相關閱讀
練習
**4 固體中的缺陷**
4.1 導論
4.2 為什麼會形成缺陷?
4.3 點缺陷
4.4 點缺陷的統計
4.5 線缺陷—位錯
4.6 平面缺陷
4.7 三維缺陷
相關閱讀
練習
**5 固體中的擴散**
5.1 擴散方程導論
5.2 擴散的原子理論:Fick定律及擴散構造理論D
5.3 隨機行走問題
5.4 其他質量傳輸機制
5.5 擴散的數學
相關閱讀
練習
**6 相平衡**
6.1 導論
6.2 Gibbs相規則
6.3 相的成核與生長
相關閱讀
練習
**7 固體的機械性質—彈性**
7.1 導論
7.2 彈性關係
7.3 通過運動方程分析應力
7.4 對純膨脹和純剪切的胡克定律
7.5 泊松比
7.6 E、e和v之間的關係
7.7 E、G和n之間的關係
7.8 正常力的解析
相關閱讀
練習
**8 固體的機械性質—塑性**
8.1 導論
8.2 塑性觀察
8.3 位錯的作用
8.4 非晶材料的變形
相關閱讀
練習
**9 固體的電子結構**
9.1 導論
9.2 波、電子與波函數
9.3 量子力學
9.4 電子能帶表示
9.5 實際能帶結構
9.6 電子能帶結構的其他方面
相關閱讀
練習
**10 材料的電子性質**
10.1 導論
10.2 電子態的佔據
10.3 Fermi能量的位置
10.4 金屬的電子性質:導電性與超導性
10.5 半導體
10.6 有機材料的電氣行為
相關閱讀
練習
**11 接面與器件及納米尺度**
11.1 導論
11.2 接面
11.3 選定的器件
11.4 納米結構與納米器件
**索引**