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首页> 外文期刊>Angewandte Chemie >Erich Hikkel, Pioneer of Organic Quantum Chemistry: Reflections on Theory and Experiment
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Erich Hikkel, Pioneer of Organic Quantum Chemistry: Reflections on Theory and Experiment

机译:有机量子化学的先驱Erich Hikkel:对理论和实验的反思

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摘要

In the period between 1930 and 1937. Erich Hiickel. a theoretical physicist, made profound contributions to organic chemistry in his quantum mechanical descriptions of unsaturaied and conjugated compounds. A brief account of his academic career is followed by simplified expositions, from the point of view of an organic chemist, of the highly approximate theoretical methods he used. Of special significance in the case of cyclic molecules of the class C_nH_n is the concept of filled shells when the number of Tt electrons is (4N + 2) (N = 0,1,2,...). Examinations of key applications ol Hiickel's ideas reveal how they eventually motivated the exploration of new fields in organic synthesis and organic reaction mechanism. Another significant (but untilrecently, virtually ignored) contribiuion by Hiickel was the recognition that atomic connectivity is a strong determinant of spin multiplicity in non-Kekule molecules. This idea provides, in principle, a basis for predicting violations of Hund's rule, asrecent computational and experimental developments confirm. The interaction of experiment with different styles of quantum theory, and the impact of this relationship on the development of chemistry, arc briefly considered. Speculations are given on whyHiickel's work exerted so little influence on organic chemistry for decades before its importance finally began to be recognized.
机译:在1930年至1937年之间。埃里希·希克尔(Erich Hiickel)。一位理论物理学家,在他对不饱和和共轭化合物的量子力学描述中,对有机化学做出了巨大贡献。从有机化学家的角度简要介绍了他的学术生涯之后,简单阐述了他所使用的高度近似的理论方法。对于C_nH_n类的环状分子,当Tt电子数为(4N + 2)(N = 0,1,2,...)时,填充壳的概念尤为重要。希克尔(Hiickel)的关键应用研究表明,它们最终是如何激发人们探索有机合成和有机反应机理新领域的。 Hiickel的另一个重要的贡献(但直到最近几乎被忽略了)是认识到原子连通性是非Kekule分子中自旋多重性的重要决定因素。从理论上讲,这一思想为预测违反Hund规则的行为提供了基础,最近的计算和实验研究都证实了这一观点。简要考虑了实验与不同类型的量子理论的相互作用以及这种关系对化学发展的影响。人们猜测为什么Hiickel的研究几十年来对有机化学的影响如此之小,直到其重要性终于被人们认识。

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