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A catalyst don’t appear in the overall stoichiometry of the reaction it catalyzes, but it must appear in at least one of the elementary reactions in the mechanism for the catalyzed reaction. 53242-76-5, Name is 2-(2-(4-Chlorophenyl)acetyl)benzoic acid, molecular formula is C15H11ClO3. In an article, author is Miyazaki, Jun,once mentioned of 53242-76-5, Computed Properties of C15H11ClO3.
Isocyano compounds newly recognized in photochemical reaction of thiazole: matrix-isolation FT-IR and theoretical studies
UV-induced photoreactions of thiazole isolated in low-temperature argon matrices have been investigated by a joint use of infrared spectroscopy and density-functional-theory calculations. Photoproducts have been identified by comparison of the observed infrared spectra with the corresponding calculated spectral patterns, leading to the conclusion that undetected open-chain molecules, syn-2-isocyanoethenethiol (C N-CH CH-SH) and 2-isocyanothiirane, are initially produced by cleavage of the CS-CN bond with hydrogen-atom migration, when the matrix samples are exposed to UV radiation coming from a super high-pressure mercury lamp for 3 min. In the secondary photolysis, syn-2-isocyanoethenethiol and 2-isocyanothiirane change to another unknown molecule, 2isocyanoethanethial (C N-CH2 CH-SH), by hydrogen-atom migration with generation of the C S double bond. These photoreaction pathways are supported by kinetic analysis of the absorbance changes of IR bands against irradiation time. We have also found that HC N and the cCH CH-Sc biradical are photodecomposed from thiazole by cleavage of the CN-CC bond following the cleavage of the CS-CN bond, where the hydrogen atom on the center carbon atom of center dot CHCH-S center dot immediately migrates to the end carbon atom to form CH2 C S or to the sulfur atom to form HC C-SH. In addition, weak bands of the species of interest in astrophysics and astrochemistry such as HC CH, N C-SH, HN C S, HC NS, and the center dot CN radical are detected, but the photoconversion from thiazole to isothiazole or Dewar thiazole is not found. The ring-opening photoreaction, photoisomerization and photodecomposition pathways of thiazole isolated in low-temperature argon matrices are discussed comprehensively.
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Reference:
Isothiazole – Wikipedia,
,Isothiazole – ScienceDirect.com