...
首页> 外文期刊>Nanoscale >Computational studies on the reactivity of alkyl halides over (Al2O3)(n) nanoclusters: an approach towards room temperature dehydrohalogenation
【24h】

Computational studies on the reactivity of alkyl halides over (Al2O3)(n) nanoclusters: an approach towards room temperature dehydrohalogenation

机译:计算研究烷基的反应性卤化物/(氧化铝)(n)发光机制:一个方法对室温脱卤化氢

获取原文
获取原文并翻译 | 示例

摘要

The role of alumina nanoclusters as a catalyst on the reactivity of alkyl halides has been explored. The thermochemical data obtained from Density Functional Theory (DFT) calculations and the analyses of the transition structures reveal that, between the two competing reactions, elimination (via E2) versus dissociative addition (via S(N)2), elimination is the kinetically controlled one and thus at room temperature, olefin is the major product. The results are in excellent agreement with the recent experimental observation where more than 97% of ethylene is formed at room temperature with the reaction of ethyl fluoride over an alumina surface, although the dissociative addition product is being thermodynamically more stable. We have tried to rationalize the fact by using alumina clusters of different sizes as well as different alkyl halides having beta-H for elimination. It has been shown that, during the elimination (E2) pathway, the transition structure is oriented in such a way that the eliminating halogen and the beta-H are in the interacting position with the three-centered Al and two-centered O atoms, respectively, where the Lewis acid/base interaction is the main guiding factor. We have also shown a possible pathway for regenerating the catalyst. Finally, the possibility of the reactions has been tested in the presence of H2O to mimic the same on the hydrated alumina surface.
机译:制备氧化铝作为催化剂的作用卤代烃的反应性探索。密度泛函理论(DFT)计算过渡结构的分析两者之间的竞争反应,消除(通过E2)和离解(通过S (N) 2),取消活动控制,因此在室温下,烯烃是主要产品。最近实验基本一致观察超过97%的乙烯在哪里在室温下形成的反应乙氟在氧化铝表面,虽然离解添加产品从热力学角度来看更稳定。合理化利用氧化铝的事实不同的大小和不同的烷基卤化物在beta-H消除。在消除(E2)表明,的通路,过渡结构这种方式消除卤素和beta-H在相互作用与地位由铝和two-centered O原子,分别在路易斯酸/碱互动是主要的指导因素。也为再生展示了一个可能的途径催化剂。反应测试水的存在模拟相同的水合氧化铝表面。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号