首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Reactions of alkenes with ozone in the gas phase: a matrix-isolation study of secondary ozonides and carbonyl-containing reaction products
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Reactions of alkenes with ozone in the gas phase: a matrix-isolation study of secondary ozonides and carbonyl-containing reaction products

机译:烯烃与臭氧在气相中的反应:次级臭氧化物和含羰基反应产物的基质分离研究

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Gas phase ozonolysis reactions of the alkenes ethene, cis- and trans-but-2-ene, isoprene and the monoterpenes alpha -pinene, beta -pinene, 3-darene, limonene and beta -myrcene have been carried out and the reaction products have been trapped in O-2-doped-argon matrices onto a CsI window held at 12 K. Products have been identified by IR spectroscopy. Comparison with previous matrix spectra, where secondary ozonides have been generated either in situ by annealing or in solution reactions allows a positive identification of the secondary ozonides of ethene and of cis- and trans-but-2-ene to be made. These observations are backed up by experiments utilising the isotopes C-13 and H-2 (D). It appears that secondary ozonides have also been formed from isoprene and the range of monoterpenes studied; this hypothesis is based upon the similarity of spectral features seen in the products of these reactions within those of the simpler alkenes. A number of other primary and secondary products are also identified from these reactions. Ethene gives formaldehyde as a primary product and acetaldehyde as a secondary product; it is found that the yield of acetaldehyde compared to formaldehyde increases as the reaction times are increased. Formaldehyde, one of the expected primary products, is formed by ozonolysis of beta -pinene, although the other expected primary product, nopinone, is not seen. A range of secondary reaction products have been identified from the ozonolysis of the monoterpenes studied (C) 2000 Elsevier Science B.V. All rights reserved. [References: 36]
机译:已进行了烯烃乙烯,顺式和反式-2-烯,异戊二烯和单萜的α-pine烯,β-pine烯,3-ene烯,li烯和β-月桂烯的气相臭氧分解反应,反应产物为将其在O-2-掺杂的氩气基质中捕集到保持在12 K的CsI窗口上。产品已通过红外光谱法鉴定。与以前的基质光谱进行比较,在基质光谱中,通过退火或在溶液反应中就地生成了次要的臭氧化物,可以对乙烯,顺式和反式-2-顺丁烯的次要的臭氧化物进行正面鉴定。这些观察结果得到了利用同位素C-13和H-2(D)进行的实验的支持。似乎还从异戊二烯和研究的单萜的范围中形成了次级臭氧化物。这种假设是基于这些反应产物在较简单烯烃中所见光谱特征的相似性。从这些反应中还鉴定出许多其他初级和次级产物。乙烯制得甲醛为主要产物,乙醛为次要产物。已经发现,与甲醛相比,乙醛的产率随着反应时间的增加而增加。甲醛是预期的主要产物之一,是通过β-pine烯的臭氧分解反应形成的,尽管未见其他预期的主要产物诺哌酮。从所研究的单萜的臭氧分解中已经鉴定出一系列二级反应产物(C)2000 Elsevier Science B.V.保留所有权利。 [参考:36]

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