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Success in making [Zn.sup.+] from atomic [Zn.sup.0] encapsulated in an MFI-type zeolite with UV light irradiation.(Report)

The paramagnetic [Zn.sup.+] species was prepared from atomic [Zn.sup.0] encapsulated in an MFI-type zeolite with UV light irradiation. This [Zn.sup.+] species has the doublet spin state and exhibits a specific electron spin resonance band at g = 1.998 and unusual absorption bands around 38,000 and 3... Full description

Journal Title: Journal of the American Chemical Society Dec 11, 2013, Vol.135(49), p.18481-18489
Main Author: Kuroda, Yasushige
Other Authors: Kobayashi, Hisayoshi , Yumura, Takashi , Ohkubo, Takahiro , Itadani, Atsushi , Oda, Akira , Torigoe, Hiroe
Format: Electronic Article Electronic Article
Language: English
Subjects:
Quelle: Cengage Learning, Inc.
ID: ISSN: 0002-7863
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recordid: gale_ofa359110777
title: Success in making [Zn.sup.+] from atomic [Zn.sup.0] encapsulated in an MFI-type zeolite with UV light irradiation.(Report)
format: Article
creator:
  • Kuroda, Yasushige
  • Kobayashi, Hisayoshi
  • Yumura, Takashi
  • Ohkubo, Takahiro
  • Itadani, Atsushi
  • Oda, Akira
  • Torigoe, Hiroe
subjects:
  • Paramagnetism -- Research
  • Zinc Compounds -- Chemical Properties
  • Zinc Compounds -- Research
  • Electron Paramagnetic Resonance -- Usage
ispartof: Journal of the American Chemical Society, Dec 11, 2013, Vol.135(49), p.18481-18489
description: The paramagnetic [Zn.sup.+] species was prepared from atomic [Zn.sup.0] encapsulated in an MFI-type zeolite with UV light irradiation. This [Zn.sup.+] species has the doublet spin state and exhibits a specific electron spin resonance band at g = 1.998 and unusual absorption bands around 38,000 and 32,500 [cm.sup.-1].
language: English
source: Cengage Learning, Inc.
identifier: ISSN: 0002-7863
fulltext: no_fulltext
issn:
  • 0002-7863
  • 00027863
url: Link


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titleSuccess in making [Zn.sup.+] from atomic [Zn.sup.0] encapsulated in an MFI-type zeolite with UV light irradiation.(Report)
creatorKuroda, Yasushige ; Kobayashi, Hisayoshi ; Yumura, Takashi ; Ohkubo, Takahiro ; Itadani, Atsushi ; Oda, Akira ; Torigoe, Hiroe
ispartofJournal of the American Chemical Society, Dec 11, 2013, Vol.135(49), p.18481-18489
identifierISSN: 0002-7863
subjectParamagnetism -- Research ; Zinc Compounds -- Chemical Properties ; Zinc Compounds -- Research ; Electron Paramagnetic Resonance -- Usage
descriptionThe paramagnetic [Zn.sup.+] species was prepared from atomic [Zn.sup.0] encapsulated in an MFI-type zeolite with UV light irradiation. This [Zn.sup.+] species has the doublet spin state and exhibits a specific electron spin resonance band at g = 1.998 and unusual absorption bands around 38,000 and 32,500 [cm.sup.-1].
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titleSuccess in making [Zn.sup.+] from atomic [Zn.sup.0] encapsulated in an MFI-type zeolite with UV light irradiation.(Report)
descriptionThe paramagnetic [Zn.sup.+] species was prepared from atomic [Zn.sup.0] encapsulated in an MFI-type zeolite with UV light irradiation. This [Zn.sup.+] species has the doublet spin state and exhibits a specific electron spin resonance band at g = 1.998 and unusual absorption bands around 38,000 and 32,500 [cm.sup.-1].
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titleSuccess in making [Zn.sup.+] from atomic [Zn.sup.0] encapsulated in an MFI-type zeolite with UV light irradiation.(Report)
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atitleSuccess in making [Zn.sup.+] from atomic [Zn.sup.0] encapsulated in an MFI-type zeolite with UV light irradiation.(Report)
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abstractThe paramagnetic [Zn.sup.+] species was prepared from atomic [Zn.sup.0] encapsulated in an MFI-type zeolite with UV light irradiation. This [Zn.sup.+] species has the doublet spin state and exhibits a specific electron spin resonance band at g = 1.998 and unusual absorption bands around 38,000 and 32,500 [cm.sup.-1].
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date2013-12-11