Condensed phase property of methanol in the mesoporous silica

S. Kittaka, A. Serizawa, T. Iwashita, S. Takahara, T. Takenaka, Yasushige Kuroda, T. Mori

Research output: Contribution to journalArticle

7 Citations (Scopus)

Abstract

Adsorbed state of methanol condensed in MCM-41 was studied by analyzing the dynamic properties using quasielastic neutron scattering. Dynamic properties of methanol above monolayer range were markedly suppressed loosing translational motions and overall rotations.

Original languageEnglish
Pages (from-to)653-656
Number of pages4
JournalStudies in Surface Science and Catalysis
Volume132
Publication statusPublished - 2001

Fingerprint

Silicon Dioxide
dynamic characteristics
Methanol
methyl alcohol
Silica
silicon dioxide
translational motion
Multicarrier modulation
Neutron scattering
Monolayers
neutron scattering
MCM-41

ASJC Scopus subject areas

  • Physical and Theoretical Chemistry
  • Catalysis

Cite this

Kittaka, S., Serizawa, A., Iwashita, T., Takahara, S., Takenaka, T., Kuroda, Y., & Mori, T. (2001). Condensed phase property of methanol in the mesoporous silica. Studies in Surface Science and Catalysis, 132, 653-656.

Condensed phase property of methanol in the mesoporous silica. / Kittaka, S.; Serizawa, A.; Iwashita, T.; Takahara, S.; Takenaka, T.; Kuroda, Yasushige; Mori, T.

In: Studies in Surface Science and Catalysis, Vol. 132, 2001, p. 653-656.

Research output: Contribution to journalArticle

Kittaka, S, Serizawa, A, Iwashita, T, Takahara, S, Takenaka, T, Kuroda, Y & Mori, T 2001, 'Condensed phase property of methanol in the mesoporous silica', Studies in Surface Science and Catalysis, vol. 132, pp. 653-656.
Kittaka S, Serizawa A, Iwashita T, Takahara S, Takenaka T, Kuroda Y et al. Condensed phase property of methanol in the mesoporous silica. Studies in Surface Science and Catalysis. 2001;132:653-656.
Kittaka, S. ; Serizawa, A. ; Iwashita, T. ; Takahara, S. ; Takenaka, T. ; Kuroda, Yasushige ; Mori, T. / Condensed phase property of methanol in the mesoporous silica. In: Studies in Surface Science and Catalysis. 2001 ; Vol. 132. pp. 653-656.
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