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首页> 外文期刊>Angewandte Chemie >Ethers on Si(001): A Prime Example for the Common Ground between Surface Science and Molecular Organic Chemistry
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Ethers on Si(001): A Prime Example for the Common Ground between Surface Science and Molecular Organic Chemistry

机译:SI(001)的ethers:表面科学与分子有机化学之间共同的主要实例

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摘要

By using computational chemistry it has been shown that the adsorption of ether molecules on Si(001) under ultrahigh vacuum conditions can be understood with classical concepts of organic chemistry. Detailed analysis of the two-step reaction mechanism-1) formation of a dative bond between the ether oxygen atom and a Lewis acidic surface atom and 2) nucleophilic attack of a nearby Lewis basic surface atom-shows that it mirrors acid-catalyzed ether cleavage in solution. The O-Si dative bond is the strongest of its kind, and the reactivity in step 2 defies the Bell-Evans-Polanyi principle. Electron rearrangement during C-O bond cleavage has been visualized with a newly developed method for analyzing bonding, which shows that the mechanism of nucleophilic substitutions on semiconductor surfaces is identical to molecular S(N)2 reactions. Our findings illustrate how surface science and molecular chemistry can mutually benefit from each other and unexpected insight can be gained.
机译:通过使用计算化学,已经表明,通过有机化学的经典概念,可以理解在超高真空条件下Si(001)上的醚分子对Si(001)的吸附。 详细分析两步反应机制-1)在醚氧原子和路易斯酸性表面原子和2)附近Lewis碱性表面原子的亲核侵蚀性的形成键形成,表明它反映了酸催化的醚裂解 在解决方案中。 O-Si Dative键是其种类中最强的,并且步骤2中的反应性无视钟越来的原则。 在C-O键切割期间的电子重新排列已经通过新开发的分析方法进行了可视化,表明半导体表面上的亲核取代机制与分子S(n)2反应相同。 我们的研究结果说明了表面科学和分子化学如何相互益处彼此,并且可以获得意外的见解。

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