本書從原理和應用兩個方向展開,詳細介紹了多種環境中的等離激元驅動催化反應和等離激元激子耦合驅動催化反應。主要可分為以下部分: 基于表面增強拉曼散射(SERS)的等離激元驅動催化反應在大氣和液相中的機理和應用、基于針尖增強拉曼散射(TERS)的等離激元驅動催化反應在高真空中的機理和應用、等離激元激子耦合相互作用的物理模型和特性研究、等離激元激子耦合驅動催化反應在電化學液相中的應用,以及光電協同調控下的耦合驅動催化反應。通過介紹大量經典研究案例,結合相應理論計算與模型簡介,深入淺出地介紹了等離激元激子相互作用的意義與發展前景。
本書適用于有一定理論基礎的物理學本科生和有光學相關研究經歷的研究生和科研工作者。
等離激元-激子相互作用:原理和應用在介紹經典的理論解釋和應用時加入大量科研*前沿的進展,保證讀者在能理解基礎概念的同時,對本領域的發展進展和熱點有一定了解。
CONTENTS
PlasmonExciton Interaction: Principles
and Applications
CONTENTS
CHAPTER 1Introduction
References
CHAPTER 2PlasmonDriven
Chemical Reactions Based on
SERS in Atmosphere
2.1Brief introduction
2.2Plasmondriven oxidation
reactions
2.2.1Genuine SERS spectrum of PATP
2.2.2Experimental and theoretical
investigations of
plasmondriven oxidation
reactions
2.3Plasmondriven reduction
reactions
2.4Priority between plasmondriven
oxidation and
reduction reactions
References
CHAPTER 3PlasmonDriven
Surface Catalytic Reactions Monitored by
Electrochemical SERS in Liquid
3.1Introduction
3.2Designed apparatus
3.3Plasmondriven reduction
reactions in liquid
3.3.1Laserintensitydependent
3.3.2Potentialdependent
3.3.3LSPRdependent
3.3.4pHdependent
3.4Plasmondriven oxidation
reactions
3.5Priority between plasmondriven
surface catalytic
reactions in liquid
References
CHAPTER 4PlasmonDriven
Surface Catalysis Reactions Monitored by
TERS in High Vacuum
4.1Introduction of TERS
4.2Brief history of TERS
4.3Setup of TERS
4.4Plasmondriven surface
catalytic reactions
References
CHAPTER 5PlasmonExciton CoDriven
Surface Catalytic Reactions
5.1Introduction
5.2Mechanisms
5.2.1Free space spontaneous emission
5.2.2Spontaneous emission in cavities
5.3Femtosecond absorption
5.4Applications
References
CHAPTER 6PlasmonExciton CoDriven
Catalytic Reactions Based on
Electrochemical SERS
6.1Introduction
6.2Plasmonexciton codriven
reduction reactions
6.3Plasmonexciton codriven
oxidation reactions
6.4The priority in the plasmonexciton codriven
catalytic reactions
6.5Conclusions
References
CHAPTER 7ElectroOptical
Synergy on PlasmonExciton CoDriven Surface
Reduction Reactions
7.1Introduction
7.2Properties of electrooptical
device
7.2.1Optical measurements
7.2.2Electrical measurements
7.3Plasmonexciton codriven
surface reduction reactions
7.3.1Laser intensitydependent
surface reduction
reactions
7.3.2Biasvoltagedependent
surface reduction reaction
7.3.3Gatevoltagedependent
surface reduction reaction
References
Acknowledgements