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首页> 外文期刊>Theoretical Chemistry Accounts >Hydrogenated amorphous silicon nanostructures: novel structure–reactivity relationships for cyclization and ring opening in the gas phase
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Hydrogenated amorphous silicon nanostructures: novel structure–reactivity relationships for cyclization and ring opening in the gas phase

机译:氢化非晶硅纳米结构:气相环化和开环的新型结构-反应性关系

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The effects of the reactive center connectivity and internal rotations on the reactivity of hydrogenated silicon nanostructures toward cyclization and ring opening pathways have been investigated. Rate coefficients for 25 cyclization and ring opening reactions for hydrides containing up to eight silicon atoms have been calculated using G3//B3LYP. The overall reactions exhibit two elementary steps. Overcoming the first barrier results in the formation of a hydrogen-bridged cyclic intermediate from a substituted silylene. Passing over the second barrier converts this intermediate into a cyclic silicon hydride. The rate-determining step varied according to the ring size formed and the temperature. Assuming a rate-determining step, values for the single-event Arrhenius pre-exponential factor, $ tilde{A}$ , and the activation energy, E a, were calculated from G3//B3LYP rate coefficients corrected for internal rotations, and a group additivity scheme was developed to predict $ tilde{A}$ and E a. The values predicted by group additivity are more accurate than structure–reactivity relationships currently used in the literature, which rely on a representative $ tilde{A}$ value for each reaction class and the Evans-Polanyi correlation to predict E a. Internal rotation corrections played a prominent role in cyclization pathways, impacting $ tilde{A}$ values for larger ring formation reactions more strongly than any variations in the connectivity of the reactive center.
机译:已经研究了反应性中心连通性和内部旋转对氢化硅纳米结构对环化和开环途径的反应性的影响。已使用G3 // B3LYP计算了最多包含8个硅原子的氢化物的25个环化反应和开环反应的速率系数。总体反应表现出两个基本步骤。克服第一障碍导致由取代的亚甲硅形成氢桥联的环状中间体。越过第二势垒,将这种中间体转化为环状氢化硅。速率确定步骤根据形成的环尺寸和温度而变化。假设是一个速率确定步骤,则从针对内部校正的G3 // B3LYP速率系数中计算出单事件Arrhenius预指数因子$ tilde {A} $和活化能E a 旋转,并开发了一个群可加方案来预测$ tilde {A} $和E a 。通过基团可加性预测的值比目前文献中使用的结构反应关系更准确,后者依赖于每个反应类别的代表性$ tilde {A} $值和Evans-Polanyi相关性来预测E a 。内部旋转校正在环化途径中起着重要作用,对较大环形成反应的$ tilde {A} $值的影响比反应性中心的连通性的任何变化都大。

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