Diffusion of sodium from the exterior to the interior surface of faujasite zeolites exchanged for different alkaline metal ions

I. Hannus, János B. Nagy, I. Kiricsi

Research output: Contribution to journalArticle

1 Citation (Scopus)

Abstract

Metallic sodium formed upon thermal decomposition of NaN3 migrates from the external surface of zeolite into its pore system. Interaction takes place between neutral sodium and ionic cesium, too, as proved by ESR spectroscopy.

Original languageEnglish
Pages (from-to)409-414
Number of pages6
JournalHyperfine Interactions
Volume99
Issue number4
Publication statusPublished - 1996

Fingerprint

Zeolites
zeolites
Metal ions
metal ions
Sodium
sodium
Sodium Azide
Cesium
cesium
thermal decomposition
Paramagnetic resonance
Pyrolysis
Spectroscopy
porosity
spectroscopy
interactions
faujasite

ASJC Scopus subject areas

  • Physics and Astronomy(all)
  • Atomic and Molecular Physics, and Optics
  • Condensed Matter Physics
  • Electronic, Optical and Magnetic Materials
  • Nuclear and High Energy Physics

Cite this

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title = "Diffusion of sodium from the exterior to the interior surface of faujasite zeolites exchanged for different alkaline metal ions",
abstract = "Metallic sodium formed upon thermal decomposition of NaN3 migrates from the external surface of zeolite into its pore system. Interaction takes place between neutral sodium and ionic cesium, too, as proved by ESR spectroscopy.",
author = "I. Hannus and Nagy, {J{\'a}nos B.} and I. Kiricsi",
year = "1996",
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volume = "99",
pages = "409--414",
journal = "Hyperfine Interaction",
issn = "0304-3843",
publisher = "Springer Netherlands",
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AU - Hannus, I.

AU - Nagy, János B.

AU - Kiricsi, I.

PY - 1996

Y1 - 1996

N2 - Metallic sodium formed upon thermal decomposition of NaN3 migrates from the external surface of zeolite into its pore system. Interaction takes place between neutral sodium and ionic cesium, too, as proved by ESR spectroscopy.

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VL - 99

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JO - Hyperfine Interaction

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