...
首页> 外文期刊>International Journal of Quantum Chemistry >Computational characterization of isomeric C4H2O systems: Thermochemistry, vibrational frequencies, and optical spectra for butatrienone, ethynyl ketene, butadiynol, and triafulvenone
【24h】

Computational characterization of isomeric C4H2O systems: Thermochemistry, vibrational frequencies, and optical spectra for butatrienone, ethynyl ketene, butadiynol, and triafulvenone

机译:C4H2O异构体系统的计算表征:丁三烯酮,乙炔基乙烯酮,丁二炔醇和三富烯酮的热化学,振动频率和光谱

获取原文
获取原文并翻译 | 示例

摘要

Species of empirical formula C4H2O have been invoked either as elusive intermediates in flames or oxidations on heterogeneous catalysts, or as long-lived species in the interstellar medium. Butatrienone has been characterized experimentally, but isomers ethynyl ketene, butadiynol, and trifulvenone have been described only by computational modeling. Triafulvenone is of special interest as the ketene analog of the carbonyl compound cyclopropenone; both species contain seriously strained three-membered rings. In contrast to cyclopropenone, which is detected in the interstellar medium, triafulvenone continues to elude experimental capture. The contrast is attributed to a degree of aromatic stabilization in cyclopropenone and anti-aromatic destabilization in triafulvenone. In this report, we characterize the structure, vibrational and electronic spectra, and thermochemistry for triafulvenone and three of its isomers, butatrienone, ethynyl ketene, and butadiynol to assist experimental detection of these elusive species. Our calculations have shown that triafulvenone is the least stable of these four isomers; even the well-known butatrienone, is not the most stable. The so far undetected ethynyl ketene is thermodynamically the most stable of these isomers. To facilitate experimental detection of these species we provide vibrational frequencies calculated using both B3LYP/cc-pVTZ and MP2/cc-pVTZ level model chemistry corrected for anharmonicity including the possibility that the spectra may include overtones and combination bands for these species The regions of intense IR absorption and most important frequencies are also underlined for all the species involved. To guide the search for short-lived C4H2O species, we also characterize the optical spectrum. (c) 2015 Wiley Periodicals, Inc.
机译:经验式C4H2O的物种被用作火焰中难以捉摸的中间体,或在非均相催化剂上被氧化,或被称为星际介质中的长寿命物种。丁三烯酮已通过实验进行了表征,但仅通过计算模型描述了乙炔基乙烯酮,丁二炔醇和三丁烯酮的异构体。 Triafulvenone作为羰基化合物环丙烯酮的烯酮类似物特别令人关注。这两个物种都含有严重拉紧的三元环。与在星际介质中检测到的环丙烯酮相反,三烯富烯酮继续逃避实验性捕获。对比归因于环丙烯酮中一定程度的芳族稳定和三烯富隆酮中的抗芳族不稳定。在本报告中,我们描述了三烯富烯酮及其三个异构体丁三烯酮,乙炔基乙烯酮和丁二炔醇的结构,振动光谱和电子光谱以及热化学性质,以帮助实验检测这些难以捉摸的物种。我们的计算表明,在这四个异构体中,三烯富烯酮是最不稳定的。即使是众所周知的丁三烯酮,也不是最稳定的。至今未发现的乙炔基乙烯酮在热力学上是这些异构体中最稳定的。为便于实验检测这些物种,我们提供了使用B3LYP / cc-pVTZ和MP2 / cc-pVTZ水平模型化学计算的振动频率,已针对非谐性进行校正,包括光谱可能包含这些物种的泛音和组合谱带。对于所有涉及的物种,还强调了红外吸收和最重要的频率。为了指导寻找短命的C4H2O物种,我们还对光谱进行了表征。 (c)2015年威利期刊有限公司

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号