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Functionalization of Semiconductor Surfaces

ISBN: 978-1-118-19980-0
E-book
480 pages
March 2012
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Chapter 1. Introduction
Franklin (Feng) Tao, Yuan Zhu, and Steven L. Bernasek

Chapter 2. Surface Analytical Techniques
Ying Wei Cai and Steven L. Bernasek

Chapter 3. Structures of Semiconductor Surfaces and Origins of Surface Reactivity with Organic Molecules
Yongquan Qu and Keli Han

Chapter 4. Pericyclic Reactions of Organic Molecules at Semiconductor Surfaces
Keith T. Wong and Stacey F. Bent

Chapter 5. Chemical Binding of Five-membered and Six-membered Aromatic Molecules
Franklin F. Tao and Steven L. Bernasek

Chapter 6. Influence of Functional Groups in Substituted Aromatic Molecules on the Selection of Reaction Channel in Semiconductor Surface Functionalization
Andrew V. Teplyakov

Chapter 7. Covalent Binding of Polycyclic Aromatic Hydrocarbon Systems
Dr. Yong Kian Soon and Professor Xu Guo-Qin

Chapter 8.
Young Hwan Min, Hangil Lee, Do Hwan Kim, and Sehun Kim

Chapter 9. Ab initio molecular dynamics studies of conjugated dienes on semiconductor surfaces
Mark E. Tuckerman and Yanli Zhang

Chapter 10. Formation of Organic Nanostructures on Semiconductor Surfaces
Zakir Hossian and Maki Kawai

Chapter 11. Formation of Organic Monolayers through Wet Chemistry
Damien Aureau and Yves J. Chabal

Chapter 12. Chemical Stability of Organic Monolayers Formed in Solution
Leslie E. O’Leary, Erik Johansson, and Nathan S. Lewis

Chapter 13. Immobilization of Biomolecules at Semiconductor Interfaces
Robert J. Hamers

Chapter 14. Perspective and Challenge
Franklin (Feng) Tao and Steven L. Bernasek