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1.
用变分过渡态理论对CH3SiH3与H的抽提反应进行了理论研究;利用从头算计算了反应体系的构型、振动频率和能量等信息;计算了温度在298 ~1700K内反应的速率常数和穿透系数。结果表明,在室温下,变分对于此反应影响较大,隧道效应特别明显,计算得到的速率常数和实验值符合得很好。  相似文献   

2.
CH+H_2→CH_3的MCSCF和VTST研究   总被引:1,自引:0,他引:1  
用福井的内禀反应坐标理论和MCSCF/6-31G方法计算了CH+H_2→CH_3的反应途径。在此基础上,计算了沿反应途径的动态学行为和变分过渡态理论(VTST)的速率常数(包括CVT,ICVT,/VT和US方法)。结果表明,反应的返回效应不大;但反应途径的曲率效应较大,它对速率常数影响较大,理论研究必须考虑这一因素。  相似文献   

3.
刘若庄  马思渝  李宗和 《化学学报》1994,52(12):1170-1176
用从头算的UHF/6-31G方法,反应途径哈密顿理论以及变分过渡态理论, 计算了反应CH~2(^3B~1)+H~2→CH~3+H的反应途径.沿反应途径的动态学性质和正则变分过渡态理论的速率常数,用变分过渡态方法处理效果明显;较低温度下考虑隧道效应更重要,而用小曲率近似的校正是有效的;H~2 分子的振动激发对反应速率常数有较大增进.  相似文献   

4.
用从头算的UHF/6-31G方法,反应途径哈密顿理论以及变分过渡态理论, 计算了反应CH~2(^3B~1)+H~2→CH~3+H的反应途径.沿反应途径的动态学性质和正则变分过渡态理论的速率常数,用变分过渡态方法处理效果明显;较低温度下考虑隧道效应更重要,而用小曲率近似的校正是有效的;H~2 分子的振动激发对反应速率常数有较大增进.  相似文献   

5.
利用变分过渡态理论的“直接动力学”方法对NH3分子和基态NH(X3∑)自由基的反应进行了理论研究;利用从头算计算得到反应体系的电子结构能和能量梯度等信息,计算了200~2500K温度范围该反应的速率常数和穿透系数,分析了影响隧道效应和反应速率常数的一些因素.结果表明,在低温情况下,变分对于此反应影响较大,隧道效应特别明显.计算得到的速率常数和实验值符合得很好.  相似文献   

6.
马思渝  刘若庄 《化学学报》1996,54(7):632-637
用从头算方法计算了反应CH(^4∑^-)+H2O→CH2(^3B1)+OH的反应途径。在此基础上, 计算沿反应途径的动态学性质和正则变分过渡态理论的速率常数, 并进行隧道效应校正。结果表明, 电子相关能对反应活化位垒影响较大; 反应存在返回效应和隧道效应, 用正则变分过渡态方法和小曲率近似的隧道校正是有效的。  相似文献   

7.
用从头计算法辅以能一梯度法优化了反应C_2H+H_2→C_2H+H的过渡态,用福井谦一的理论求出反应途径,用反应途径哈密顿理论及正则变分过渡态理论计算沿反应途径的动力学性质和反应速率常数。在此基础上对涉及振动激发的选态反应速率常数进行计算,所得结果与现有的实验结果相符合。  相似文献   

8.
采用直接动力学的方法,对多通道反应体系Br+CH3S(O)CH3进行了理论研究.在BH&H-LYP/6-311G(2d,2p)水平下获得了优化几何构型、频率及最小能量路径(MEP),能量信息的进一步确认在MC-QCISD(单点)水平下完成.利用正则变分过渡态理论,结合小曲率隧道效应校正(CVT/SCT)方法计算了该反应的两个可行的反应通道在200K~2000K温度范围内的速率常数.在整个反应区间内,生成HBr的反应通道与生成CHa的反应通道存在着竞争,前者是主反应通道,后者是次反应通道.变分效应和小曲率隧道效应对反应速率常数的计算影响都很小.理论计算得到的两个反应通道的反应速率常数与实验值符合得很好.  相似文献   

9.
马咏梅  王艳丽 《化学通报》2014,77(6):539-544
在B3LYP/6-31G(d,p)水平上优化了Cl原子与CH3COCH2Cl反应的各驻点的几何构型,并在相同水平上通过频率计算和内禀反应坐标(IRC)分析对过渡态的结构和反应物、产物的连接性进行了验证。采用高精确模型G3MP2方法进行单点能计算,构建了反应的势能剖面。计算结果表明,标题反应有抽氢反应、加成-消除反应、取代反应3种反应机理6条反应通道。利用经典过渡态理论(TST)和正则变分过渡态理论(CVT)计算了各反应通道在200~2000 K温度范围内的速率常数,并用小区率隧道效应模型(SCT)对抽氢反应进行校正。计算结果显示,反应有一定的变分效应,计算的总反应速率常数与文献报道的实验值符合得较好,速率常数的三参数表达式为k=2.33×10-19T2.54exp(567.07/T)cm3·mol-1·s-1。  相似文献   

10.
在B3LYP/6-31G(d,p)水平上优化了Cl原子与CH3COCH2Cl反应的各驻点的几何构型,并在相同水平上通过频率计算和内禀反应坐标(IRC)分析对过渡态的结构和反应物、产物的连接性进行了验证。采用高精确模型G3MP2方法进行单点能计算,构建了反应的势能剖面。计算结果表明,标题反应有抽氢反应、加成-消除反应、取代反应3种反应机理6条反应通道。利用经典过渡态理论(TST)和正则变分过渡态理论(CVT)计算了各反应通道在200~2000 K温度范围内的速率常数,并用小区率隧道效应模型(SCT)对抽氢反应进行校正。计算结果显示,反应有一定的变分效应,计算的总反应速率常数与文献报道的实验值符合得较好,速率常数的三参数表达式为k=2.33×10-19T2.54exp(567.07/T)cm3·mol-1·s-1。  相似文献   

11.
The abstract reaction of CH3SiH3 with H has been studied by using the“direct dynamics”method of variational transition-state theory,which is based on the information on geometries,frequencies and energies calculated by ab initio along the minimum energy path.The rate constants and transmission coefficients were calculated for the temperature range 298~1700K.The result indicates that the variational effect on this reaction is great and the tunneling effect is very obvious at room temperature.The rate constants calculated match well with the experimental value.  相似文献   

12.
IntroductionThe abstraction reaction between CH,SiH, and H plays an important role in siliconcontaining species and has been the subject of many experimental studies'-', but it hasnot been studied with the variational transition state theory. In this paper, the dynamics ofthe title reaction is investigated by using POLYRATE7.8 program obtained from Truhlar'.The theoretical rate constants for the title reaction are obtained over a wide range oftemperature 298- 1 700 K.Theory and Methods'…  相似文献   

13.
The multiple-channel reactions SiH(3) + SiH(CH(3))(3) --> products are investigated by direct dynamics method. The minimum energy path (MEP) is calculated at the MP2/6-31+G(d,p) level, and energetic information is further refined by the MC-QCISD (single-point) method. The rate constants for individual reaction channels are calculated by the improved canonical variational transition state theory with small-curvature tunneling correction over the temperature range of 200-2400 K. The theoretical three-parameter expression k(T) = 2.44 x 10(-23)T(3.94) exp(-4309.55/T) cm(3)/(molecule s) is given. Our calculations indicate that hydrogen abstraction channel R1 from SiH group is the major channel because of the smaller barrier height among five channels considered.  相似文献   

14.
次甲基作为化学反应源曾引起广泛的兴趣.Schaefer 及其合作者于1977年对反应CH(~4Σ~-)+H_2→CH_2(~3B_1)+H 进行过量子化学研究,但是计算中限制了一些自由度.近年来,由于能量梯度方法的发展,反应途径哈密顿理论和变分过渡态理论的提出,有可能进一步对该反应进行分子反应动力学性质的研究.本文用从头算UHF/6-31G 方法和能量梯度方法首先优化出上述反应(原子编号为CH_a+H_bH_c→H_bCH_a+H_c)的过渡态;再用  相似文献   

15.
Reaction Mechanism and Kinetics for HCCO Radical with NO   总被引:1,自引:0,他引:1  
The mechanism and dynamical properties for the reaction of HCCO radicals with NO were investigated theoretically. The minimum energy paths(MEP) of the reaction were calculated by using the density functional theory(DFT) at the B3LYP/6-311 G^** level, and the energies along the MEP were further refined at the QCISD(T)/6-311 G^** level. It is found that the reaction mechanism of the title reaction involves three channels, producing HCNO CO, HONC CO and HCN CO2 products, respectively. Channel 1 is the most favorable path. The rate constant for channel 1 were calculated over a temperature range of 800-2500 K by using the canonical variational transition-state theory(CVT). The rate constant for the main path is negatively dependent on temperature, which is a characteristic of radical reactions with negative activation energy, and the variational effect for the rate constant calculation is small in the whole temperature range.  相似文献   

16.
The hydrogen abstraction reaction of Cl atoms with CF3CH2Cl (HCFC‐133a) is investigated by using density function theory and ab initio approach, and the rate constants are calculated by using the dual‐level direct dynamics method. Optimized geometries and frequencies of reactants, transition state, and products are computed at the B3LYP/6‐311+G(2d,2p) level. To refine the energetic information along the minimum energy path, single‐point energy calculations are carried out at the G3(MP2) level of theory. The interpolated single‐point energy method is employed to correct the energy profiles for the title reaction. The rate constants are evaluated by using the canonical variational transition state theory with a small‐curvature tunneling correction over a wide range of temperature, 200–2000 K. The variational effect for the reaction is moderate at low temperatures and very small at high temperatures. However, the tunneling correction has an important contribution in the lower temperature range. The agreement between calculated rate constants and available experimental values is good at lower temperatures but diverges significantly at higher temperatures. © 2012 Wiley Periodicals, Inc. Int J Chem Kinet 44: 661–667, 2012  相似文献   

17.
Ab initio direct dynamics method has been used to study the title reaction. Electronic structure information including geometries, gradients and force constants (Hessians) are calculated at the UQCISD/6-311+G** level. Energies along the minimum energy path are improved by a series of single-point G2//QCISD calculations. The changes of the geometries, vibratioanal frequencies, potential energies and total curvature along the reaction path are discussed. The rate constants in the temperature range 200–3000 K are calculated by canonical variational transition state theory with small-curvature tunneling correction (CVT/SCT) method. The results show that the variational effect is small and in the lower temperature range, the small curvature tunneling effect is important for the reaction.  相似文献   

18.
We present a direct ab initio dynamics study of thermal rate constants of the hydrogen abstraction reaction of CH $_{2}(^{3}B_{1})$ + H2CO $\rightarrow $ CH3 + CHO. The MP2/cc-pVDZ method is employed to optimize the geometries of stationary points as well as the points on the minimum energy path. The energies of all the points were further refined at the CCSD(T)/cc-pVTZ level of theory based on the Moller– Plesset perturbation theory (MP2) optimized geometries. The rate constants were evaluated using the conventional transition state theory, the canonical variational TST, and the improved canonical variational TST, also both including small-curvature tunneling correction in the temperature range of 300–2,500 K. The calculated results show that the rate constants have positive temperature dependence in the calculated temperature range. The calculated results show that the tunneling effect is important at low temperature region.  相似文献   

19.
A model is proposed for performing microcanonical variational transition state theory calculations which incorporates ideas from vibrator and flexible variational transition state models. Vibrational frequencies, moments of inertia, and potential energy for the variational transition state are found by reaction path following as for the vibrator model. However, the transitional modes are treated as hindered rotors using an analytic potential and an analytic density of states, which are fit to barriers for hindered rotation determined from reaction path following. The model proposed here differs from the flexible transition state model in that the density of states for the transitional modes is analytic and transitional modes and external rotational angular momenta are uncoupled. For the H + CH3 ? CH4 system, rate constants calculated with this new model are only 6–23% smaller on average from those of the flexible transition state model for values of total angular momentum which correspond to average rotational temperatures of 0–2000 K. Harmonic frequencies calculated for the transitional modes from the hindered rotor Hamiltonian are in good agreement with the exact values found by a reaction path analysis. © 1994 John Wiley & Sons, Inc.  相似文献   

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