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用密度泛函方法在B3LYP/6-31G(d,p)基组水平上对反应系统中的所有物种进行全优化,用CPCM溶剂模型在同一基组水平上进行了单点计算,系统研究了硅醇盐前驱体Si(OCH3)4在酸性条件下的水解、聚合机理,阐明了二者的相互竞争关系.研究发现,H2O以氢键或配位键与前驱体结合,然后通过氢转移完成水解;水分子从质子化烷氧基的对面键合并发生水解;第4级水解是H2O从对位驱逐质子化烷氧基,但不能水解完全;水解产物通过"环状模式",由氢键结合成多元环,然后发生氢转移并完成聚合;水解过程的能垒明显低于聚合过程;H+阻止水解产物聚合成环;硅正离子可引发无垒聚合反应,但在能量上并不可行.  相似文献   
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邻位吡啶自由基多通道分解反应的动力学和反应机理研究   总被引:1,自引:0,他引:1  
Utilizing Gaussian94 program package, all species involved in decomposition reactions of o-pyridyl radical were optimized fully at B3LYP/6-311++G^** level. Intrinsic reaction coordinate calculations were employed to confirm the connections of the transition states and products, and transition states were ascertained by the number of imaginary frequency (0 or 1). The reaction mechanism was elucidated by the vibrational mode analysis and electronic population analysis, and the reaction rate constants were calculated with transition state theory.  相似文献   
3.
Neutral aluminium alkyls are well known to act as ethylene oligomerization and polymerization catalysts and cocatalysts.On the basis of the full optimization of alkylaluminium compounds with Gaussian 98 program package at the B3LYP/6-31G** level,the selected structures and bonding energies were investigated extensively.The geometries and bonding energies of AlR3(R = H,CH3,C2H5,C3H7,C4H9) and Al(C2H5)2R'(R' = C2H5,C3H7,C4H9,C5H11,C6H13) were investigated extensively,and we found that,along with the prolongation of carbon chains the terminal C-C bond is shortened gradually until to a constant value of about 0.1532 nm in C4H9;and the bonding energy almost remains constant.The dative bonding of C2H4 to Al(C2H5)3,whose bonding energy is only 15.30 kJ/mol,is very weak.  相似文献   
4.
B3N3独特的六元环结构是研究非苯芳香性的理想模板。本实验在B3LYP-D3(BJ)/def2-TZVP水平上优化了B3N3六元环结构并进行频率验证,用Multiwfn3.7(dev)绘制了其LOL-π填色图,完美展示了六元环的离域π电子分布和非苯芳香性特征。实验普适性和可操作性强,安全性高,易于推广。  相似文献   
5.
n-Butylbenzene cations C10H14^+ serve as a model compound to investigate the reaction mechanisms of alkylbenzene cations. The reactions of C10H14^+. decomposition reaction system have been studied extensively at the B3LYP/6-311++G^** level with Gaussion98 package. The chain reaction of C10H14^+ dissociation was initiated by C-H bond rupture. All reaction channels initiated by C-H rupture were fully investigated with the vibrational mode analvsis to confirm the transition states and to reveal the reaction mechanism. A theoretical investigation on the reactions of this positive ion free radical can help us fully understand the decomposition processes.  相似文献   
6.
采用密度泛函理论方法研究了[Rh(R,R-DIOP)]+[DIOP=(1R,2R)-1,2-O-异丙叉-1,2-二醚氧基-1,2-双(二苯基磷基)乙烷]催化下苯并环丁酮手性聚稠环过程在气相、四氢乙呋喃(THF)及水中的反应机理.计算结果表明,在气相中反应容易进行,经TS2形成六元环的过程为决速步骤,但产物无明显的对映选择性.在THF中,S-和R-通道的C—C键活化能垒仅由79.5和69.3 kJ/mol提高到80.2和88.8 kJ/mol,未改变反应的实质;Rh与2个C原子的配位明显弱于气相,相对于催化剂和反应物自由能之和,S-和R-通道的反应总能垒分别提高到63.8和68.1 kJ/mol.对于S-通道,溶剂THF使经TS2的能垒升至112.0 kJ/mol,仍为整个过程的决速步骤;然而对R-通道,溶剂使经TS1形成五元环过程的能垒升至91.5 kJ/mol,但使经TS2的能垒由78.9 kJ/mol降至77.7 kJ/mol,IM1→TS1成为决速步骤.在以水为溶剂时,经TS1形成五元环的过程成为2个通道的决速步骤,其在S-和R-通道中的能垒分别为102.5和94.9 kJ/mol.因此,溶剂改变了反应的决速步骤及能垒.3种方法均预测R-通道为主反应路径,但THF能明显增加产物的对映选择性.采用自然键轨道(NBO)电荷分析了反应过程中电荷的变化.  相似文献   
7.
使用Gaussian 98程序包、在B3LYP/6-311++G**基组水平上对各物种进行全优化的基础上,用振动模式分析对1-丙烯基和NO反应的机理进行了充分阐明. 该反应体系共有7个反应通道和5组小分子最终产物,CH2O+CH3CN、CH2CHCN+H2O、CH3CHO+HCN、CH3CHO+HNC以及CH3CCH+HNO. 研究表明,反应通道C3H5¢+NO→IM1→TS1→IM2→TS2→IM3→TS3→CH3CHO+HCN在能量上是最为可行的.  相似文献   
8.
使用Gaussian98程序包,在B3LYP/6-311++G**基组水平上对CH3CF2O2+HOO的各反应通道进行了充分研究,过渡态和产物间的联系通过IRC确认.用振动模式分析和电子布居分析对所有反应通道进行了讨论以阐明反应机理.研究结果表明,在能量上CH3CF2CO2+HOO→IM1→TS1→CH3CF2O2H+O2通道最为有利,CH3CF2O2H和O2是主要产物,但CH3OH和CF2O的生成也是可能的.  相似文献   
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