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| Content Provider | Springer Nature Link |
|---|---|
| Author | Kazanskii, V. B. Serykh, A. I. Bell, A. T. |
| Copyright Year | 2002 |
| Abstract | Diffuse-reflectance IR spectra of methane adsorbed on high-silica NaZSM-5 and HZSM-5 zeolites point to a stronger adsorption of methane on sodium cations than on protons. For the asymmetric stretching vibration ν$_{3}$, this form of adsorption is characterized by a doublet with band maxima at 2980 and 3010 cm$^{–1}$. For the fully symmetric stretching vibration ν$_{1}$, it is characterized by a singlet with a maximum at 2880 cm$^{–1}$. Methane is also adsorbed on NaZSM-5 in a weaker form, which is characterized by absorption bands with maxima at 3002 (ν$_{3}$) and 2887 (ν$_{1}$) cm$^{–1}$. The weaker form of methane adsorption on acidic bridging hydroxy groups of HZSM-5 is characterized by absorption bands at 3001 and 2887 cm$^{–1}$ (ν$_{3}$ and ν$_{1}$, respectively). A difference between this form of adsorption and weak adsorption on sodium-exchanged zeolite reveals itself in the somewhat higher intensity of the band at 2887 cm$^{–1}$. For methane adsorbed on NaZSM-5, the frequencies of deformational vibrations and a spectrum in the near IR region are obtained for the first time. It was found that the perturbance of adsorbed methane molecules is seen in the spectrum as in the low-frequency shifts of most of the bands that appear due to composite vibrations and overtones and as new adsorption bands that were not observed for gaseous methane. |
| Starting Page | 419 |
| Ending Page | 426 |
| Page Count | 8 |
| File Format | |
| ISSN | 00231584 |
| Journal | Kinetics and Catalysis |
| Volume Number | 43 |
| Issue Number | 3 |
| e-ISSN | 16083210 |
| Language | English |
| Publisher | Kluwer Academic Publishers-Plenum Publishers |
| Publisher Date | 2002-01-01 |
| Publisher Place | New York |
| Access Restriction | One Nation One Subscription (ONOS) |
| Subject Keyword | Physical Chemistry Catalysis |
| Content Type | Text |
| Resource Type | Article |
| Subject | Chemistry Catalysis Modeling and Simulation Computer Science Applications |
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