Theoretical study of ion desorption from poly-(methyl methacrylate) and poly-(isopropenyl acetate) thin films through core excitation
Use this link to cite this item : https://ir.lib.hiroshima-u.ac.jp/00018824
ID | 18824 |
file | |
creator |
Tabayashi, Kiyohiko
Wada, Shin-ichi
Sumii, Ryouhei
Tanaka, Kenichiro
Odelius, Michael
Pettersson, Lars G. M.
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subject | polymer films
desorption
surface chemistry
X-ray absorption spectra
density functional theory
excited states
molecular dynamics method
dissociation
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abstract | Site-specific chemical reactions following core excitation of poly-(methyl methacrylate) (PMMA) and poly-(isopropenyl acetate) (PiPAc) thin films were investigated. New x-ray absorption spectra of PMMAand PiPAc at the C and O K edges and theoretical spectra within the framework of density functional theory using model molecules were reported, and some new peak assignments were proposed for these spectra. Core-hole excited state molecular dynamics simulations were performed to discuss dissociation dynamics for the target systems, and some specific reaction mechanisms were discussed and explained theoretically; for example, the amount of CH3 ion fragments for PMMA was enhanced at the C and O K edges through the existence of the repulsive σ*(O–CH3) excited state.
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journal title |
Journal of Chemical Physics
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volume | Volume 124
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issue | Issue 12
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start page | 124901-1
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end page | 124901-8
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date of issued | 2006-03-22
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publisher | American Institute of Physics
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issn | 0021-9606
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ncid | |
publisher doi | |
language |
eng
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nii type |
Journal Article
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HU type |
Journal Articles
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DCMI type | text
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format | application/pdf
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text version | publisher
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rights | Copyright (c) 2006 American Institute of Physics.
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relation url | |
department |
Graduate School of Science
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