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首页> 外文期刊>Chemistry: A European journal >Muon-Substituted Malonaldehyde: Transforming a Transition State into a Stable Structure by Isotope Substitution
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Muon-Substituted Malonaldehyde: Transforming a Transition State into a Stable Structure by Isotope Substitution

机译:Muon取代的丙二醛:通过同位素取代将过渡态转变为稳定结构

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Isotope substitutions are usually conceived to play a marginal role on the structure and bonding pattern of molecules. However, a recent study [Angew. Chem. Int. Ed. 2014, 53, 13706-13709; Angew. Chem. 2014, 126, 13925-13929] further demonstrates that upon replacing a proton with a positively charged muon, as the lightest radioisotope of hydrogen, radical changes in the nature of the structure and bonding of certain species may take place. The present report is a primary attempt to introduce another example of structural transformation on the basis of the malonaldehyde system. Accordingly, upon replacing the proton between the two oxygen atoms of malonaldehyde with the positively charged muon a serious structural transformation is observed. By using the ab initio nuclear-electronic orbital non-Born-Oppenheimer procedure, the nuclear configuration of the muon-substituted species is derived. The resulting nuclear configuration is much more similar to the transition state of the proton transfer in malonaldehyde rather than to the stable configuration of malonaldehyde. The comparison of the atoms in molecules (AIM) structure of the muon-substituted malonaldehyde and the AIM structure of the stable and the transition-state configurations of malonaldehyde also unequivocally demonstrates substantial similarities of the muon-substituted malonaldehyde to the transition state.
机译:通常认为同位素取代对分子的结构和键合模式起着边际作用。但是,最近的一项研究[Angew。化学诠释埃德2014,53,13706-13709; Angew。化学[2014,126,13925-13929]进一步证明,用带正电的介子取代质子时,由于氢的最轻的放射性同位素,可能会发生结构性质的自由基变化和某些物质的键合。本报告是引入基于丙二醛体系的结构转变的另一个例子的主要尝试。因此,在用带正电的介子取代丙二醛的两个氧原子之间的质子时,观察到严重的结构转变。通过使用从头开始的核电子轨道非Born-Oppenheimer程序,可以得出μ子取代物种的核构型。所得核构型与丙二醛中质子转移的过渡态非常相似,而不是丙二醛的稳定构型。 μon取代的丙二醛的分子内原子(AIM)结构与丙二醛的稳定态和过渡态构型的AIM结构的比较也明确证明了μon取代的丙二醛与过渡态的实质相似之处。

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