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Studies on the Plasmon-Induced Photoexcitation Processes of Molecules on Metal Surfaces (Springer Theses)

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Management number 231999596 Release Date 2026/06/18 List Price $29.40 Model Number 231999596
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This thesis proposes a novel way to catch light energy using an ultrasmall nanostructure. The author has developed photon-materials systems to open the way for novel photoexcitation processes based on the findings obtained from in-situ observation of the systems in which localized surface plasmon (LSP) and molecules interact strongly. The highly ordered metal nanostructure provided the opportunity for anisotropic photoexcitation of materials in an eccentric way. The optimization of the systems via nanostructuring and electrochemical potential control resulted in the novel excitation process using LSP to realize the additional transition for photoexcitation. Furthermore, excited electronic states formed the strong coupling between LSP and excitons of molecules. This thesis will provide readers with an idea for achieving very effective processes for photon absorption, scattering, and emission beyond the present limits of photodevices.  Read more

ASIN B074QQ4K9G
XRay Not Enabled
ISBN13 978-4431565796
Edition 1st ed. 2017
Language English
File size 4.5 MB
Page Flip Enabled
Publisher Springer
Word Wise Not Enabled
Print length 148 pages
Accessibility Learn more
Screen Reader Supported
Publication date August 10, 2017
Enhanced typesetting Enabled

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