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Fourier transform infrared-probed O( 3P) microreactor: Demonstration with ethylene reactions in argon matrix

  • John L. Gossage
  • , Jewel A.G. Gomes
  • , David L. Cocke
  • , Kuyen Li
  • , Che Jen Lin
  • , Rafael Tadmor
  • , Abir Basu
  • , Shagun Bhat
  • , Satish Tandel
  • , Prashanth Jayabalu
  • , Harimadhav Balu

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

To demonstrate the development of an oxygen atom microreactor in the form of liquid-helium-cooled solid argon matrix deposited on an infrared (IR) window, the oxidation of ethylene by mobile O atoms has been investigated. O atom diffusion through the argon matrix is confirmed and used to examine ethylene-oxygen atom reactions. In a bench-scale matrix isolation system probed with a Fourier transform infrared (FT-IR) spectrometer, matrices of solid Ar at 8-10 K doped with NO 2 and ethylene have been prepared on a ZnSe window within an evacuated cryostat. The matrices have been photolyzed using 350-450 nm photons, and the reaction products resulting from the reaction of O( 3P), one of the photolysis products of NO 2, with ethylene have been identified using FT-IR and a Gaussian 98W simulation program. These products include oxirane, acetaldehyde, ethyl nitrite radical, and ketene. The temperature effect in the range of 10-30 K on the products formed has also been investigated. The reaction mechanisms are discussed and the viability of the solid Ar matrix being a low temperature microreactor to examine reaction mechanisms of mobile oxygen atoms is elaborated.

Original languageEnglish
Pages (from-to)1236-1242
Number of pages7
JournalApplied Spectroscopy
Volume58
Issue number10
DOIs
StatePublished - 1 Oct 2004
Externally publishedYes

Keywords

  • Ar matrix
  • Ethylene
  • FT-IR
  • Fourier transform infrared
  • MARM
  • Matrix atom/ radical microreactor
  • Matrix isolation spectroscopy
  • NO
  • Oxygen atom microreactor
  • Photolysis

ASJC Scopus subject areas

  • Instrumentation
  • Spectroscopy

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