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[×ÊÔ´] Introduction to surface chemistry and catalysis Second Edition

ÕâÊDz®¿ËÀû´óѧGabor SomorjaiµÄ´ó×÷µÄµÚ¶þ°æ£¬Ïà±ÈÓÚµÚÒ»°æ£¬ÔÚÔ­ÀíÉϽ²µÃ¸ü¶àÁËһЩ£¬¶øÇÒÓÐһЩнøµÄ½øÕ¹Ò²°üÀ¨ÔÚÄÚ¡£Ó¦¸ÃËãÊÇÊ×·¢£¬²»ÖªµÀÓÐûÓн±Àø£¡
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PREFACE
INTRODUCTION
1 SURFACES: AN INTRODUCTION
1.1 HISTORICAL PERSPECTIVE
1.2 SURFACES AND INTERFACES:
CLASSIFICATION OF PROPERTIES
1.3 EXTERNAL SURFACES
1.4 CLEAN SURFACES
1.5 INTERFACES
1.6 THE TECHNIQUES OF SURFACE SCIENCE
1.7 SUMMARY AND CONCEPTS
1.8 PROBLEMS
2 THE STRUCTURE OF SURFACES
2.1 INTRODUCTION
2.2 SURFACE DIFFRACTION
2.3 NOTATION OF SURFACE STRUCTURES
2.4 THE STRUCTURE OF CLEAN SURFACES
2.5 RECONSTRUCTION
2.6 THE STRUCTURE OF ADSORBED
MONOLAYERS
2.7 POLYMER SURFACES
2.8 SUMMARY AND CONCEPTS
2.9 PROBLEMS
3 THERMODYNAMICS OF SURFACES
3.1 INTRODUCTION
3.2 DEFINITION OF SURFACE
THERMODYNAMIC FUNCTIONS
3.3 WORK NEEDED TO CREATE A SURFACE OF
A ONE-COMPONENT SYSTEM: SURFACE
TENSION
3.4 THE SURFACE ENERGY AND SURFACE
COMPOSITION OF TWO-COMPONENT SYSTEMS
3.5 SURFACES WHEN NO BULK PHASE EXISTS:
TWO-DIMENSIONAL PHASES
3.6 METASTABLE SURFACE PHASES
3.7 CURVED SURFACES
3.8 THERMODYNAMICS OF ADSORBED
MONOLAYERS
3.9 THERMAL STABILITY OF SURFACE LAYER
AND NANOCRYSTALS
3.10 THERMAL STABILITY OF SURFACE OXIDE
LAYER
3.11 SUMMARY AND CONCEPTS
3.12 PROBLEMS
4 DYNAMICS AT SURFACES
4.1 INTRODUCTION
4.2 SURFACE ATOM VIBRATIONS
4.3 ELEMENTARY PROCESSES OF GAS¨C
SURFACE INTERACTION
4.4 ADSORPTION
4.5 SURFACE DIFFUSION
4.6 DESORPTION
4.7 SUMMARY AND CONCEPTS
4.8 PROBLEMS
5 ELECTRICAL PROPERTIES OF SURFACES
5.1 INTRODUCTION
5.2 THE ELECTRON DENSITY DISTRIBUTION AT
THE SURFACE AND THE INTERFACE DIPOLE
LAYER
5.3 THE SURFACE ELECTRON POTENTIAL
5.4 THE WORK FUNCTION
5.5 THE SURFACE ENERGY
5.6 THE SURFACE DIPOLE LAYER
5.7 ADSORPTION-INDUCED CHARGE TRANSFER
AT SURFACES: METALS AND INSULATORS
5.8 SURFACE ELECTRON DENSITY OF STATES
5.9 ELECTRON EXCITATION AT SURFACES
5.10 ELECTRON TUNNELING
5.11 HOT ELECTRON CURRENT INDUCED BY
SURFACE REACTIONS
5.12 SUMMARY AND CONCEPTS
5.13 PROBLEMS
6 SURFACE CHEMICAL BOND
6.1 INTRODUCTION
6.2 BONDING TRENDS ACROSS THE PERIODIC
TABLE
6.3 CLUSTER-LIKE BONDING OF MOLECULAR
ADSORBATES
6.4 THE CARBON MONOXIDE CHEMISORPTION
BOND
6.5 ADSORBATE-INDUCED RESTRUCTURING
AND THE FLEXIBILITY OF SURFACES
6.6 THERMAL ACTIVATION OF BOND BREAKING
6.7 SURFACE-STRUCTURE SENSITIVITY OF
BOND BREAKING
6.8 EFFECTS OF ADSORBATE¨CADSORBATE
INTERACTION
6.9 WEAK SURFACE BONDS
6.10 SUMMARY AND CONCEPTS
6.11 PROBLEMS
7 MECHANICAL PROPERTIES OF SURFACES
7.1 INTRODUCTION
7.2 BASIC CONCEPTS: ELASTIC MODULUS,
YIELD STRENGTH, AND TENSILE STRENGTH
7.3 UNDERSTANDING SURFACE MECHANICAL
PROPERTIES AT THE MOLECULAR LEVEL
7.4 ATOMIC FORCE MICROSCOPE
7.5 ELASTIC MECHANICAL PROPERTIES OF
SURFACES
7.6 HARDNESS AND YIELD STRENGTH OF
SURFACES AT THE NANOMETER SCALE
7.7 NANOTRIBOLOGY
7.8 SINGLE BOND STUDIES
7.9 DIAMOND
7.10 SUMMARY AND CONCEPTS
7.11 PROBLEMS
8 POLYMER SURFACES AND BIOINTERFACES
8.1 INTRODUCTION
8.2 THE EFFECTS OF POLYMER BULK
PROPERTIES ON SURFACE PROPERTIES
8.3 SURFACE SEGREGATION ON POLYMER
SURFACES
8.4 SURFACE STRUCTURAL RESPONSE TO
ENVIRONMENTAL CHANGES
8.5 BIOINTERFACES
8.6 PROTEIN¨CSURFACE INTERACTIONS
8.7 POLYMER SURFACE CONFORMATION
EFFECTS ON PROTEIN ADSORPTION
8.8 ORIENTATION AND CONFORMATION OF
ADSORBED BIOMOLECULES
8.9 SUMMARY AND CONCEPTS
8.10 PROBLEMS
9 CATALYSIS BY SURFACES
9.1 INTRODUCTION
9.2 CATALYTIC ACTION
9.3 CATALYST PREPARATION, DEACTIVATION,
AND REGENERATION
9.4 TECHNIQUES TO CHARACTERIZE CATALYST
SURFACE AND STUDY THE REACTIVITY OF
CATALYSTS
9.5 METAL CATALYSIS
9.6 CASE HISTORIES OF SURFACE CATALYSIS
9.7 SELECTIVITY IN MULTIPATH
HETEROGENEOUS CATALYTIC REACTIONS
9.8 SUMMARY AND CONCEPTS
9.9 PROBLEMS
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