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Theoretical study on kinetics of the H2CO + O-2 - HCO + HO2 reaction

机译:H2CO + O-2-> HCO + HO2反应动力学的理论研究

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A theoretical study on the kinetics of the H2CO + O-2 -> HCO + HO2 reaction has been carried out from first principles using canonical variational transition state theory incorporating corrections from small curvature tunneling and hindered rotation treatments. Rate constants were calculated using the geometries, gradient and Hessian obtained at the BH&HLYP/cc-pVDZ level with the energy correction at the CCSD(T)/aug-cc-pVTZ//BH&HLYP/cc-pVDZ level. The rate constant expression is obtained as k(t) = 2.95 x 10(-21) x T-3.152 x exp [-18352/T] (cm(3) molecule (1) s (1)) for the temperature range 300-3000 K. The result shows an excellent agreement with available scattered experimental data over this temperature range and thus the expression can be used confidently for the whole range.
机译:从H2CO + O-2-> HCO + HO2反应动力学的理论研究,是使用经典的变分过渡态理论,结合小曲率隧穿和受阻旋转处理的修正,从第一原理进行的。使用BH&HLYP / cc-pVDZ级别获得的几何形状,梯度和Hessian以及CCSD(T)/ aug-cc-pVTZ // BH&HLYP / cc-pVDZ级别的能量校正来计算速率常数。对于温度范围300,速率常数表达式为k(t)= 2.95 x 10(-21)x T-3.152 x exp [-18352 / T](cm(3)分子(1)s(1)) -3000K。结果表明,在此温度范围内,可用的分散实验数据非常吻合,因此该表达式可以在整个范围内可靠地使用。

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