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Direct Synthesis of Organotrichlorogermanes by the Reaction of Elemental Germanium, Hydrogen Chloride,and Alkene

机译:通过元素锗,氯化氢和烯烃的反应直接合成有机三氯锗烷

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The reaction of elemental germanium, hydrogen chloride, and ethylene with copper(I) chloride catalyst gave ethyltrichlorogermane with a 66% selectivity, tetrachlorogermane also being formed. The addition of tetrachlorogermane to the reaction system increased the formation rate of ethyltrichlorogermane. The reaction of germanium, tetrachlorogermane, and butadiene resulted in the formation of l,l-dichlorogermacyclopent-3-ene. These results indicate the intermediacy of dichlorogermylene, which is formed by the reaction of elemental germanium with tetrachlorogermane. In place of ethylene, allyl chloride was fed with hydrogen chloride. Allyltrichlorogermane was obtained with a 92% selectivity together with a small amount. of tetrachlorogermane. It is highly plausible that the formation of allyltrichlorogermane is caused by the insertion of dichlorogermylene intermediate to the carbon-chlorine bond of allyl chloride.
机译:元素锗,氯化氢和乙烯与氯化铜(I)催化剂的反应得到选择性为66%的乙基三氯锗烷,也形成了四氯锗烷。向反应体系中加入四氯锗烷增加了乙基三氯锗烷的形成速率。锗,四氯锗烷和丁二烯的反应导致形成1,1-二氯锗环戊-3-烯。这些结果表明,二氯锗烷是由元素锗与四氯锗烷反应形成的中间体。代替乙烯,向烯丙基氯中加入氯化氢。以92%的选择性和少量获得烯丙基三氯锗烷。四氯锗烷。很有可能烯丙基三氯锗烷的形成是由于二氯亚锗中间产物插入烯丙基氯的碳-氯键而引起的。

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