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Materials interfaces : atomic-level structure and properties

Materials interfaces : atomic-level structure and properties (Loan 4 times)

Material type
단행본
Personal Author
Wolf, Dieter, 1942- Yip, Sidney.
Title Statement
Materials interfaces : atomic-level structure and properties / edited by Dieter Wolf and Sidney Yip.
Publication, Distribution, etc
London ;   New York :   Chapman & Hall,   1992.  
Physical Medium
xviii, 716 p. : ill. ; 25 cm.
ISBN
0412412705
Bibliography, Etc. Note
Includes bibliographical references and indexes.
Subject Added Entry-Topical Term
Surfaces (Physics) Solids.
비통제주제어
Surface phenomena,,
000 00841pamuuu200277 a 4500
001 000000507870
003 OCoLC
005 19970520150706.0
008 920527s1992 enka b 001 0 eng
010 ▼a 92021645
015 ▼a GB93-15837
020 ▼a 0412412705
040 ▼a DLC ▼c DLC ▼d UKM
049 ▼a ACSL ▼l 121024374
050 0 0 ▼a QC173.4.S94 ▼b M39 1992
082 0 0 ▼a 530.4/27 ▼2 20
090 ▼a 530.427 ▼b M425
245 0 0 ▼a Materials interfaces : ▼b atomic-level structure and properties / ▼c edited by Dieter Wolf and Sidney Yip.
260 ▼a London ; ▼a New York : ▼b Chapman & Hall, ▼c 1992.
300 ▼a xviii, 716 p. : ▼b ill. ; ▼c 25 cm.
504 ▼a Includes bibliographical references and indexes.
650 0 ▼a Surfaces (Physics)
650 0 ▼a Solids.
653 0 ▼a Surface phenomena
700 1 ▼a Wolf, Dieter, ▼d 1942-
700 1 ▼a Yip, Sidney.

Holdings Information

No. Location Call Number Accession No. Availability Due Date Make a Reservation Service
No. 1 Location Science & Engineering Library/Sci-Info(Stacks2)/ Call Number 530.427 M425 Accession No. 121024374 (4회 대출) Availability Available Due Date Make a Reservation Service B M

Contents information

Book Introduction

Many of the most important properties of materials in high-technology applications are strongly influenced or even controlled by the presence of solid interfaces. In this work, leading international authorities review the broad range of subjects in this field focusing on the atomic level properties of solid interfaces.


Information Provided By: : Aladin

Table of Contents

Contributors. Introduction. Atomic-level geometry of crystalline interfaces; D. Wolf. Experimental investigation of internal interfaces in solids; D.N. Seidman. Bulk interfaces. Part I: Bulk interfaces. Correlation between the structure and energy of grain boundaries in metals; D. Wolf, K.L. Merkle. Grain and interphase boundaries in ceramics and ceramic composites; M.G. Norton, C.B. Carter. Special properties of E grain boundaries; G. Palumbo, K.T. Aust. Grain boundary structure and migration; D.A. Smith. Role of interfaces in melting and solid-state amorphization; S.R. Phillpot, S. Yip, P.R. Okamoto, D. Wolf. Wetting of surfaces and grain boundaries; D.R. Clarke, M. Gee. Part II: Semi-bulk and thin-film interfaces. Structural, electronic and magnetic properties of thin films and superlattices; A. Continenza, C.Li, A.J. Freeman. Surfaces and interfaces as studied by scanning-tunneling microscopy; R. Hamers. Epitaxy of semiconductor thin films; J. Batstone. Phase behavior of monolayers; S.G.J. Mochrie, D. Gibbs, D.M. Zehner. Elastic and structural properties of superlattices; M. Grimsditch, I.K. Schuller. Computer simulation of the elastic behavior of interface materials; D. Wolf, J. Jasczak. Interfaces within intercalation compounds; M.S. Dresselhaus, G. Dresselhaus. Nanophase materials: structure-property correlations; R.W. Siegel. Part III: Role of interface chemistry. Interfacial segregation, bonding and reactions; C.L. Briant. Physics and chemistry of segregation at internal interfaces; R. Kirchheim. Atomic resolution study of solute-atom segregation at grain boundaries: experiments and Monte Carlo simulations; S.M. Foiles, D. Seidman. Amorphization by interfacial reaction; W.L. Johnson. Relationship between structural and electronic properties of metal-semiconductor interfaces; R. Tung. Electronic properties of semiconductor-semiconductor interfaces and their control using interface chemistry; D.W. Niles, G. Margaritondo. Microscopic nature of metal-polymer interfaces; P.S. Ho, B.D. Silverman, S-L. Chiu. Part IV: Fracture behavior. Tensile strength of interfaces; A.S. Argon, V. Gupta. Microstructure and fracture resistance of metal/ceramic interfaces; A.G. Evans, M. Ruhle. Role of interface dislocations and surface ledges in the work of adhesion; D. Wolf, J. Jaszczak. Microstructural and segregation effects in the fracture of polycrystals; D.J. Srolovitz, W. Yang.


Information Provided By: : Aladin

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