首页> 外文期刊>Journal of Fluorine Chemistry >Decomposition reactions of hexafluoropropylene oxide (HFPO): Rate coefficients calculated at different temperatures using ab initio and DFT reaction paths
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Decomposition reactions of hexafluoropropylene oxide (HFPO): Rate coefficients calculated at different temperatures using ab initio and DFT reaction paths

机译:六氟环氧丙烷(HFPO)的分解反应:使用从头算和DFT反应路径在不同温度下计算出的速率系数

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A theoretical investigation has been carried out on the reaction mechanism and kinetics of the thermal decomposition of hexafluoropropylene oxide (HFPO), a compound of importance in fluorocarbon thin film preparation in the electronics industry. Decomposition occurs via two pathways, 1 (a) to give CF2 and CF3C(O)F and 1 (b) to give CF2O and CF3CF. Rate coefficients calculated for reaction 1(a) are reported over the temperature range 300-1500 K and compared with the small number of available rate coefficients at selected temperatures within this range. Rate coefficients are reported for the first time for reaction 1(b) over the temperature range 300-1500 K. The geometries of the stationary points on the potential energy surfaces have been obtained at the MP2/6-311 ++G(d,p) level, and the energies of selected points along the minimum energy path (MEP) have been improved at the RCCSD(T)/AVDZ and RCCSD(T)/AVTZ levels. These improved energies were extrapolated to the complete basis set limit to obtain RCCSD(T)/CBS// MP2/6-311++G(d,p) energies at each selected point on the MEP. The energies were then used in a dual-level direct dynamics method to calculate rate coefficients of the two decomposition reactions. The variational effect on the rate coefficients obtained is found to be small over the whole temperature range and tunnelling plays a small but significant role only at the lower temperatures. Comparison has been made of the computed reaction enthalpies, forward activation energies and rate coefficients computed at the RCCSD(T)/CBS//MP2/6-311++C(d,p) level with those computed with a number of different functionals and with the MP2 method. Reaction 1(a) is found to be the dominant reaction throughout the temperature range considered. Calculated rate coefficients for reaction 1(a) at the highest level used (improved canonical variational theory (ICVT) with small curvature tunnelling (SCT) with the RCCSD(T)/ CBS//MP2/6-311 ++G(d,p) MEP) show reasonably good agreement with two recent sets of experimental values, although agreement with an older set is poor. This comparison highlights the need for more experimental rate coefficients for this thermolysis reaction over the whole temperature range considered, but particularly in the ranges 550-800 K and 1200-1500 K not currently covered by experimental measurements.
机译:已经对六氟环氧丙烷(HFPO)的热分解的反应机理和动力学进行了理论研究,六氟环氧丙烷在电子行业的氟碳薄膜制备中很重要。分解通过两种途径发生:1(a)得到CF2和CF3C(O)F,1(b)得到CF2O和CF3CF。在300-1500 K的温度范围内报告针对反应1(a)计算的速率系数,并将其与该范围内选定温度下的少量可用速率系数进行比较。在300-1500 K的温度范围内首次报告了反应1(b)的速率系数。势能表面上固定点的几何形状已在MP2 / 6-311 ++ G(d, p)级别,并且在RCCSD(T)/ AVDZ和RCCSD(T)/ AVTZ级别,沿最小能量路径(MEP)的选定点的能量已得到改善。将这些改进的能量外推至完整的基准集极限,以获取MEP上每个选定点的RCCSD(T)/ CBS // MP2 / 6-311 ++ G(d,p)能量。然后将能量用于双级直接动力学方法中,以计算两个分解反应的速率系数。发现在整个温度范围内,对获得的速率系数的变化影响很小,并且隧穿仅在较低温度下起很小但很重要的作用。已将在RCCSD(T)/ CBS // MP2 / 6-311 ++ C(d,p)级别计算的反应焓,正向活化能和速率系数与通过许多不同功能计算的反应焓进行了比较并使用MP2方法发现反应1(a)是在所考虑的整个温度范围内的主要反应。在使用的最高水平下反应1(a)的计算速率系数(RCCSD(T)/ CBS // MP2 / 6-311 ++ G(d, p)MEP)与最近的两组实验值显示出相当好的一致性,尽管与较旧的一组实验值的一致性较差。该比较突出显示了在所考虑的整个温度范围内对该热分解反应需要更多实验速率系数的需要,特别是在目前实验测量未涵盖的550-800 K和1200-1500 K范围内。

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