Please use this identifier to cite or link to this item: https://scholarbank.nus.edu.sg/handle/10635/29576
Title: Thermal and photo-induced oxidation reaction on silicon and copper surfaces
Authors: WANG SHUAI
Keywords: silicon; copper; oxidation; carbon dioxide; XPS; HREELS
Issue Date: 28-Mar-2011
Citation: WANG SHUAI (2011-03-28). Thermal and photo-induced oxidation reaction on silicon and copper surfaces. ScholarBank@NUS Repository.
Abstract: In this thesis, the thermal and photo-induced oxidation reaction on silicon and copper surfaces were studied by using various experimental and theoretical technologies, including X-ray photoelectron spectroscopy (XPS), high-resolution electron energy loss spectroscopy (HREELS) and density functional theory (DFT) calculations. O2 and CO2 are selected as the probe to adsorb onto the clean silicon surfaces, acetylene modified silicon surfaces and clean copper surfaces, and the results demonstrate that there will be different oxidation reactions on surfaces with thermal or photon activations.
URI: http://scholarbank.nus.edu.sg/handle/10635/29576
Appears in Collections:Ph.D Theses (Open)

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Abstract.pdf6.66 kBAdobe PDF

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Acknowledgement.pdf7.22 kBAdobe PDF

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Chapter 1 Introduction.pdf328.25 kBAdobe PDF

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Chapter 2 Experimental.pdf576.51 kBAdobe PDF

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Chapter 3 Adsorption of O2 and CO2 on the Si(111)-7x7 surfaces.pdf223.61 kBAdobe PDF

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Chapter 4 Thermal induced oxidation of Acetylene Chemisorbed on the Si(111)-7X7.pdf125.33 kBAdobe PDF

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Chapter 5 Photoinduced Epoxidation of Chemisorbed Acetylene on the Si(111)-7x7 Surface.pdf199.73 kBAdobe PDF

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Chapter 6 Photon-induced Reaction of CO2 and Chemisorbed Acetylene on the Si(111)-7x7 Surface.pdf142.8 kBAdobe PDF

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Chapter 7 Adsorption of CO2 on Cu polycrystalline surfaces and the effect of photon irradiation.pdf298.58 kBAdobe PDF

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Chapter 8 Conclusion and Outlook.pdf18.65 kBAdobe PDF

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Figure Captions.pdf50.64 kBAdobe PDF

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List of Abbreviations.pdf6.99 kBAdobe PDF

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List of Publications.pdf58 kBAdobe PDF

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List of Table.pdf11.46 kBAdobe PDF

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Summary.pdf18.52 kBAdobe PDF

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