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Adsorption of Acrylonitrile on Diamond and Silicon(001)-(2 x 1)Surfaces:Effects of Dimer Structure on Reaction Pathways and Product Distributions

机译:丙烯腈在金刚石和硅(001)-(2 x 1)表面上的吸附:二聚体结构对反应途径和产物分布的影响

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摘要

Fourier transform infrared spectroscopy(FTIR)and X-ray photoelectron spectroscopy(XPS)are used to compare the reaction of acrylonitrile with Si(001)and C(001)(diamond)surfaces.Our results show that reaction with Si(001)and C(001)yield very different product distributions that result from fundamental differences in the ionic character of these surfaces.While acrylonitrile reacts with the C(001)surface via a [2 + 2] cycloaddition reaction in a manner similar to nonpolar molecules such as alkenes and disilenes,reaction with the Si(001)surface occurs largely through the nitrile group.This work represents the first experimental example of how differences in dimer structure lead to very different chemistry for C(001)compared to that for Si(001).The fact that Si(001)reacts with the strongly polar nitrile group of acrylonitrile indicates that the zwitterionic character of this surface controls its reactivity.C(001)dimers,on the other hand,behave more like a true molecular double bond,albeit a highly strained one.Consequently,while alternative strategies will be necessary for chemical modification of Si(001),traditional schemes from organic chemistry for functionalization of alkenes and disilenes may be available for building molecular layers on C(001).
机译:傅里叶变换红外光谱(FTIR)和X射线光电子能谱(XPS)用于比较丙烯腈与Si(001)和C(001)(金刚石)表面的反应。我们的结果表明与Si(001)和C(001)产生非常不同的产物分布,这是由于这些表面的离子特性的根本差异造成的。丙烯腈通过[2 + 2]环加成反应与C(001)表面反应,其反应方式类似于非极性分子,例如烯烃和二ilenes,与Si(001)表面的反应主要是通过腈基发生的。这项工作代表了第一个实验实例,说明二聚体结构的差异如何导致C(001)的化学性质与Si(001)的化学性质非常不同Si(001)与丙烯腈的强极性腈基反应的事实表明该表面的两性离子特性决定了它的反应性。另一方面,C(001)二聚体更像是真正的分子双键,尽管一个 因此,尽管对Si(001)进行化学修饰需要采取其他策略,但有机化学的传统方案是将烯烃和二硅烯官能化,可用于在C(001)上构建分子层。

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  • 来源
    《Journal of the American Chemical Society》 |2005年第23期|p.8348-8354|共7页
  • 作者单位

    Contribution from the Department of Chemistry,1100 University Avenue,University of Wisconsin,Madison Wisconsin 53706,Chemistry Division,Naval Research Laboratory,4555 Overlook Avenue SW,Washington,DC 20375,and GE Global Research,P.O.Box 8,Schenectady;

    Contribution from the Department of Chemistry,1100 University Avenue,University of Wisconsin,Madison Wisconsin 53706,Chemistry Division,Naval Research Laboratory,4555 Overlook Avenue SW,Washington,DC 20375,and GE Global Research,P.O.Box 8,Schenectady;

    Contribution from the Department of Chemistry,1100 University Avenue,University of Wisconsin,Madison Wisconsin 53706,Chemistry Division,Naval Research Laboratory,4555 Overlook Avenue SW,Washington,DC 20375,and GE Global Research,P.O.Box 8,Schenectady;

    Contribution from the Department of Chemistry,1100 University Avenue,University of Wisconsin,Madison Wisconsin 53706,Chemistry Division,Naval Research Laboratory,4555 Overlook Avenue SW,Washington,DC 20375,and GE Global Research,P.O.Box 8,Schenectady;

    Contribution from the Department of Chemistry,1100 University Avenue,University of Wisconsin,Madison Wisconsin 53706,Chemistry Division,Naval Research Laboratory,4555 Overlook Avenue SW,Washington,DC 20375,and GE Global Research,P.O.Box 8,Schenectady;

    Contribution from the Department of Chemistry,1100 University Avenue,University of Wisconsin,Madison Wisconsin 53706,Chemistry Division,Naval Research Laboratory,4555 Overlook Avenue SW,Washington,DC 20375,and GE Global Research,P.O.Box 8,Schenectady;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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