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Unertl W.N. — Physical Structure
Unertl W.N. — Physical Structure



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Название: Physical Structure

Автор: Unertl W.N.

Аннотация:

The primary goal of this book is to summarize the current level of accumulated knowledge about the physical structure of solid surfaces with emphasis on well-defined surfaces at the gas-solid and vacuum-solid interfaces. The intention is not only to provide a standard reference for practitioners, but also to provide a good starting point for scientists who are just entering the field. The presentation in most of the chapters therefore assumes that the typical reader will have a good undergraduate background in chemistry, physics, or materials science. At the same time, coverage is comprehensive and at a high technical level with emphasis on fundamental physical principles. This first volume in a new series is appropriately devoted to the physical structure of surfaces, knowledge of which will be essential for a complete understanding of electronic properties and dynamical processes, the topics of the next two volumes in the series.

The volume is divided into four parts. Part I describes the equilibrium properties of surfaces with emphasis on clean surfaces of bulk materials. Part II provides an introduction to some of the primary experimental methods that are used to determine surface crystal structures. Part III gives an overview of the vast topic of the structure of adsorbed layers. The concluding Part IV deals with the topics of defects in surface structures and phase transitions.


Язык: en

Рубрика: Физика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 1996

Количество страниц: 900

Добавлена в каталог: 14.11.2008

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Buffer layers      675
Bukshpan, H.      574 see H.”
Bulk crystallography      5
Bulk density of states      132
Bulk elastic constants      155
Bulk lattice constant      254
bulk modulus      672
Bulk phonons      285
Bulk states      115
Bullock, E. L.      133
Bums, M.      227 see H.”
Burandt, B.      225 see R.”
Burch, R.      643
Burchhardt, J.      499 501 792 see M. “Stampfl C.”
Burdett, J. K.      643
Burdick, S.      134 see M.”
Burg, B.      498 see R.”
Burger vector      41 663 672 673 700
Buried interfaces      344 406
Buried oxygen      459
Burke, N.      643
Burnham, N. A.      418 419 see U.”
Burns, A. R.      645 see D.
Burns, G.      43
Bursill, L. A.      227 see D.
Burt, M. G.      495
Burton, W. K.      709
Busch, H.      789
Busek, P. R.      418
Busing, W. R.      158
Buslap, S. T.      225 see R.”
Bustamante, C.      418
Butadiene-iron-tncarbonyl (BIT)      546
Butane      512 512 512
Butler, D. M.      568
Bykov, V.      420 see S.
Bylander, D. M.      495
c BN      220
C(111)      161
C(111)-(2xl)      162
c(2x2)      581 598 627 631
c-BN(001)      220
Cabieia, N.      709 see W.
Cadmium chloride      511
Cadolf, I.      227 see R.”
Cafliseh, R. G.      568
Cahn, J. W.      96 788 see S.
Cai bides      143 212 222
Caibon monoxide, adsorption of      428
Caibonyl chemistry      427
Caiion terminated surface      258
Calisti, S.      568
Callen, H. B.      96
Callenas, A.      227 see J.”
Calorimetry      533 535 566 747
Calorimetry adiabatic      535
Calorimetry isothermal      535
Cammarata, R. C.      96
Campargue, R.      358
Campbell, C. T.      499 see H.”
Campbell, D. A.      644 see A.
Campbell, I. M.      180
Campbell, J. H.      568
Campuzano, J. C.      495 789
canonical ensemble      65
Canonical partition functions      726
Canter, K. F.      180 267 see T.
Cantilevers      378 379
Cantini, P.      358 see G.”
CaO      202
Cao, R.      495
Cao, Y.      358
Capillary condensation      531 532 566
Cappus, D.      225 see M.”
Car — Paninello method      109 110
Car, R.      133
Cardenas, R.      644 see G.
Cardillo, M. J.      267 see W.
Carlsson, A. E.      643
Carneiro, K.      568 574 see H.”
Carstensen, H.      225 see R.”
Carter, E. A.      268 see P.
Casanova, R.      643
Catalysis      139 166 176 443 716
Catalysts      171
Catalytic CO oxidation reaction      440
Catalytic poisoning      632
Catalytic processes      117
Catalytic reactions      174 427
Cations      248 249 253 261 264
Catlow, C. R. A.      182 see G.
Causa, M.      180
Cautero, G.      495 see V.
CdS      231 249 263
CdSe      231 249
CdTe      249 403
Celli, V.      359 see N. “Rieder K.
Centered meshes      13
Centered sites      21 587 626
Ceperly, D. M.      133
Ceramic materials      187
Ceramic synthesis      139
Ceramics, bonding in      188
Cesium peroxide (${Cs}_{2}{O}_{2}$)      478
Cesium suboxide (${Cs}_{11}{O}_{3}$)      478
Cesium superoxide (Cs02)      478
Ceva, T.      568 572 see C.”
Chadi, D. J.      133 180 266 267 268 710 see J.” “Mailhioi C.” “Qian G.
Chains      130 237
Chalcogens      446 630
Chambers, S. A.      180 225 266 227 see T.
Chambliss, D. D.      133 710
Chan, C. -M.      183 360 501 see M.
Chan, C. M.      495
Chan, C. T.      133 134 136 495 649 789 790 792 see Y. “Ho K. “Takeuchi N.” “Tomanek D.” “Wang X. “Xu C. “Zhang B.
Chan, M. H. W.      568 572 573 575 792 see A. “Kim H. “Migone A. “Pesiak M. “Zhang Q.
Chandavarkar, S.      495 496 see D.”
Chandrasekhar, S.      789
Chang, C. S.      225
Chang, H. L. M.      226 see J.”
Chang, S. C.      227 see A.
channeling      195 392 393 397
Channeling/blocking      392
Chapon, C.      225 see C.”
Charge corrugation      349
Charge density      107 108 116
Charge density distribution      104
Charge gradient      619
Charge neutral surface      167
Charge neutrality      178 200
Charge state      171
Charge transfer      247 449 457 459 464 483 486 582 600 630 633
Charge transfer effects      105
Charge-induced reconstruction      465
Charged neutral surface      142
Chehkowsky, J. R.      133 180 see M.
Cheinov, A. A.      267 see D.”
Chemical adsorption      65
Chemical bonding      159 235 427 507
Chemical forces      245
chemical potential      53 57 64 65 580 588 633 723 726 729 737 773 804
Chemical properties      273
Chemical sensois      176
Chemical sensor applications      166
Chemical turbulence      443
Chemical vapor deposition (CVD)      326
Chemical waves      442
Chemisorption      115 174 176 427 443 448 459 505 580 582 584 585 587 600 636 729 787 788
Chemisorption bond      582
Chemisorption energy      431 450
Chemisorption state      445
Chemisorption, weak      596
Chen, C. -L      643
Chen, C. -L.      792 see T.
Chen, C. J.      418 710
Chen, D. M.      133 494 792 see P.” “Zegenhagen J.”
Chen, J.      136 see H.
Chen, J. G.      495
Chen, S. P.      649 see A.
Chen, W.      266 267 see A.”
Chen, Y. C.      570 see C.
Chern, G.      227 see D.
Chernov, A. A.      96
Cheslers, M. A.      568
Chester, G. V.      792 see J.”
Chester, M.      133 495
Chetty, N.      133 136 see K.”
Chetwynd, D. G.      420 see S.
Chevary, J. A.      647 see J.
Chiang, S.      133 136 710 see D. “Johnson K. “Wilson R. “Woll Ch.”
Chiang, T. C.      267 710 see E. “Samsavar A.”
Chiarrello, R. P.      711 see H.”
Chiaudia, P.      265 see R.
Ching, W. Y.      643
Chini, P.      495
Chinn, M. D.      358 568 569 574 see S. “Shaw C.
Chnstensen, A. N.      227 see J.”
Cho, A. Y.      266
Chou, Y. C.      497 see I.
Chrisiensen, A. N.      225
Christensen, A. N.      226 see L.
Christman, K.      645 see R.”
Christmann, K.      494 495 496 498 499 500 642 643 649 788 789 see R. “Gierer M.” “Koch R.” “Over H.” “Schwarz E.” “Van M.
Chua, F. M.      646 see Y.”
Chubb, S. B.      495
Chung, J. W.      789 791 see L.
Chung, S.      568
Chung, T. T.      568
Chung, Y. W.      225 228 see P.”
Ciiiical phenomena      508
Citnn, P. H.      500 see D.
Clabes, J.      710 see P.”
Claessen, R.      225
Clark, A.      97
Clark, D. E.      789
Clark, R.      572 see S.
Clarke, D. R.      225
Classical force fields      174
Classical force models      122
Classical models      104
Classical potential models      140 154
Classical potentials      104 117 145 155 175 176
Classical turning point      345 348
Classification      747
Classification of overlayer meshes      30
Clausius — Clapeyron line      533 551 552
Clean solid surfaces      55
Cleavage      56 58 160 172 188 233 235 243 247—249 679
Cleavage faces      236 258 265
Cleavage process      142
Cleavage surfaces      142 256
Cleaved surfaces      234
Clustei models      156 158 159
Cluster binding energy      627
Cluster calculations      144 448 582
Cluster density      688
Cluster methods      112
Cluster variation      631
Clusters      112 473 600 613
Cntropic lepulsion      91
CO covered Pt(110)      364
CO on Ni(100)      431
CO on Pt(100)      413 417
CO on Pt(111)      659 660
Co on transition metals      427
Co(1010)      453
CO/Ru(0001)      430
Coadsorbate phase      480
Coadsorption      428 461 483 485 586
Cochran, W.      359 see H.”
Cocke, D. L.      225
Cocsite      174
Coddens, G.      575 see P.”
Coenen, F. P.      501 see D.
coexistence      509 510 563 567 615
Coexistence regions      533 730 780
Coheience limitations      733
Coheient potential approximation      583
Cohen, J. B.      228 see P.”
Cohen, J. M.      97 see C.
Cohen, M. L.      134 135 180 267 see J.” “Louie S. “Northrup J.
Cohen, P. I.      359 568 see C. “Pukne P.
Cohen, R. E.      643
Coherence length      532 553 686
Coherent domains      277
Coherent lattices      30
Cohesive energy      104 189 507 618 629 725 771
Coi related roughness      709
Coi relation length exponent      804
Coiiugation      348 349 468 469 471^173 481 483
Coincidence lattices      30 686
Coiundum      171 179 193 198 207
Colbourn, E. A.      180
Cole, M. W.      571 575 646 649 see D. “Klein J. “Vidah G.”
Colella, N. J.      568
Colenbrander, B. G.      420 see W.
Colion, R. J.      418 419 see N. “Hues S. “Landman U.”
Collart, E.      225
Collazo — Davila, C.      418
Collective excitations      541
Collective motion      513
Collins, I. R.      496 see D.”
Collins, J. B.      643 648 see P.
Coloumb and exchange interactions      150
Combined space method      323
Comelli, G.      495 see C.” “Dhanak V.
Comicioli, C.      495
Commensuiate lattices      30
Commensurability      483 517
Commensurate adlayer      515
Commensurate phase      555 561
Commensurate solid phase      559
Commensurate solids      510 513 514 522 545 567
Commensurate structure      515 560
Commensurate-incommensurate transition      516 519 554 567
Complete wetting      562
Completely ionic material      163
Complex meshes      15
composition      53
Compound formation      456 477
Compound semiconductors      247 248
Compressibility      701
Comrie, C. M.      494 495 see M.
Comsa, G.      418 569 571 573 710 see M.” “David R.” “Kern K.” “Kunkel R.” “Michely T.” “Poelsema B.” “Zeppenfeld P.”
Con ligation function      345
Concentration      53
Concerted movements      771
Condensation      534 550 551 564 688
Condon, N. G.      227 see P.
Conelaiions      38 545 581 600 625 678 747 798 799
Configurational entropy      65 81 633
Cong, S.      643
Conjugate honeycomb-chained-trimer      126
Conosion      139 176 443
Conrad, E. H.      360 358 710 see Y.” “Robinson I.
Considine, D. M.      180
Constituents      508
Contamination      549
Continuous phase transitions      567
Continuous transition      525 561 720 766
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