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Modified Au-based nanomaterials studied by surface plasmon resonance spectroscopy [electronic resource]
- 作者: Serrano Rubio, Aida.
- 其他作者:
- 其他題名:
- Springer Theses
- 出版: Cham : Springer International Publishing :Imprint: Springer
- 叢書名: Springer Theses
- 主題: Surface plasmon resonance. , Nanostructured materials. , Physics , Surface and Interface Science, Thin Films. , Nanotechnology , Spectroscopy and Microscopy. , Nanoscale Science and Technology.
- ISBN: 9783319194028 (electronic bk.) 、 9783319194011 (paper)
- FIND@SFXID: CGU
- 資料類型: 電子書
- 內容註: Introduction: Surface Plasmons -- Experimental Techniques -- Extended and Localized Surface Plasmons in Annealed Au lms on Glass Substrates -- Complex Au/FeOx Nanostructures Obtained from Annealed Bilayers -- Combination of Surface Plasmon Resonance and X-ray Absorption Spectroscopies. Experimental Setup -- In-situ Study of Glasses Irradiated with X-rays by Surface Plasmon Resonance -- Study of Co-phthalocyanines Irradiated with X-rays by Surface Plasmonresonance -- Conclusions.
- 摘要註: This work pursues a novel route to functionalizing large surfaces with hybrid nanoparticles. It also casts new light on the combined use of surface plasmon resonance and X-rays. SPR spectroscopy is employed to study Au-based plasmonic nanostructures fabricated by novel methods, and a new experimental device is developed combining SPR with X-ray absorption spectroscopy at a synchrotron beamline. Using the new SPR-XAS setup developed in this work, the author has studied in-situ and real-time effects of X-ray irradiation in materials such as glasses and Co-phthalocyanines.
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讀者標籤:
- 系統號: 005135049 | 機讀編目格式
館藏資訊
This work pursues a novel route to functionalizing large surfaces with hybrid nanoparticles. It also casts new light on the combined use of surface plasmon resonance and X-rays. SPR spectroscopy is employed to study Au-based plasmonic nanostructures fabricated by novel methods, and a new experimental device is developed combining SPR with X-ray absorption spectroscopy at a synchrotron beamline. Using the new SPR-XAS setup developed in this work, the author has studied in-situ and real-time effects of X-ray irradiation in materials such as glasses and Co-phthalocyanines.
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