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CHAPTER 5. Photoexcitation in Pure and Modified Semiconductor Photocatalysts
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Title
CHAPTER 5. Photoexcitation in Pure and Modified Semiconductor Photocatalysts
Issued Date
2016-03
Citation
Kim, Gon U. (2016-03). CHAPTER 5. Photoexcitation in Pure and Modified Semiconductor Photocatalysts. RSC Energy and Environment Series, 2016-Janua(14), 110–128. doi: 10.1039/9781782622338-00110
Type
Article
ISSN
2044-0774
Abstract
Semiconductor photocatalysis has great promise for applications in solar energy conversion and environmental remediation because it is inexpensive, versatile, and environmentally benign. However, some critical factors such as limited light absorption and fast electron-hole pair recombination restrict the practical applications. Because no pure-phase semiconductors efficiently utilize solar irradiation, semiconductor materials have been modified in various ways to enhance their light-absorption properties. In this chapter, photoexcitation in modified semiconductor systems that include the impurity-doped, coupled, dye-sensitized, ligand-to-metal charge transfer (LMCT)-sensitized, and local surface plasmon resonance (LSPR)-sensitized semiconductors are discussed. In particular, the photoexcitation mechanism, charge transfer pathway, applications, and limitations of each method are described. © 2016 The Royal Society of Chemistry.
URI
http://hdl.handle.net/20.500.11750/46292
DOI
10.1039/9781782622338-00110
Publisher
Royal Society of Chemistry
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