Core-to-Rydberg band shift and broadening of hydrogen bonded ammonia clusters studied with nitrogen K-edge excitation spectroscopy
Journal of Chemical Physics 136 巻 1 号
014308- 頁
2012 発行
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タイトル ( eng ) |
Core-to-Rydberg band shift and broadening of hydrogen bonded ammonia clusters studied with nitrogen K-edge excitation spectroscopy
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作成者 |
Yamanaka Takeshi
Tabayashi Kiyohiko
Tanaka Kenichiro
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収録物名 |
Journal of Chemical Physics
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巻 | 136 |
号 | 1 |
開始ページ | 014308 |
抄録 |
Nitrogen 1s (N 1s) core-to-Rydberg excitation spectra of hydrogen-bonded clusters of ammonia (AM) have been studied in the small cluster regime of beam conditions with time-of-flight (TOF) fragmentmass spectroscopy. By monitoring partial-ion-yield spectra of cluster-origin products, "cluster" specific excitation spectra could be recorded. Comparison of the "cluster" band with "monomer" band revealed that the first resonance bands of clusters corresponding to N 1s -> 3sa(1)/3pe of AM monomer are considerably broadened. The changes of the experimental core-to-Rydberg transitions Delta FWHM (N 1s -> 3sa(1)/3pe) = similar to 0.20/similar to 0.50 eV compare well with the x ray absorption spectra of the clusters generated by using density functional theory (DFT) calculation. The broadening of the core-to-Rydberg bands in small clusters is interpreted as being primarily due to the splitting of non-equivalent core-hole N 1s states caused by both electrostatic core-hole and hydrogen-bonding (H(3)N center dot center dot center dot H-NH(2)) interactions upon dimerization. Under Cs dimer configuration, core-electron binding energy of H-N (H-donor) is significantly decreased by the intermolecular core-hole interaction and causes notable redshifts of core-excitation energies, whereas that of lone-pair nitrogen (H-acceptor) is slightly increased and results in appreciable blueshifts in the core-excitation bands. The result of the hydrogen-bonding interaction strongly appears in the n-sigma* orbital correlation, destabilizing H-N donor Rydberg states in the direction opposite to the core-hole interaction, when excited N atom with H-N donor configuration strongly possesses the Rydberg component of anti-bonding sigma* (N-H) character. Contributions of other cyclic H-bonded clusters (AM)(n) with n >= 3 to the spectral changes of the N 1s -> 3sa(1)/3pe bands are also examined. (C) 2012 American Institute of Physics. [doi: 10.1063/1.3673778]
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著者キーワード |
ammonia
association
binding energy
density functional theory
hydrogen bonds
intermolecular mechanics
molecular clusters
orbital calculations
red shift
resonant states
Rydberg states
spectral line broadening
time of flight mass spectra
X-ray absorption spectra
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NDC分類 |
化学 [ 430 ]
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言語 |
英語
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資源タイプ | 学術雑誌論文 |
出版者 |
The American Institute of Physics
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発行日 | 2012 |
権利情報 |
(c) 2012 American Institute of Physics
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出版タイプ | Version of Record(出版社版。早期公開を含む) |
アクセス権 | オープンアクセス |
収録物識別子 |
[ISSN] 0021-9606
[DOI] 10.1063/1.3673778
[NCID] AA00694991
[DOI] http://dx.doi.org/10.1063/1.3673778
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