首页> 外文期刊>The Journal of Chemical Physics >First fully ab initio potential energy surface of methane with a spectroscopic accuracy
【24h】

First fully ab initio potential energy surface of methane with a spectroscopic accuracy

机译:首先具有光谱准确性的甲烷的首先完全AB Initio潜在能量表面

获取原文
获取原文并翻译 | 示例
           

摘要

Full 9-dimensional ab initio potential energy surfaces for the methane molecule are constructed using extended electronic structure coupled-cluster calculations with various series of basis sets following increasing X cardinal numbers: cc-pVXZ (X = 3, 4, 5, 6), aug-cc-ACVXZ (X = 3, 4, 5), and cc-pCVXZ-F12 (X = 3, 4). High-order dynamic electron correlations including triple and quadrupole excitations as well as relativistic and diagonal Born-Oppenheimer breakdown corrections were accounted for. Analytical potential functions are parametrized as non-polynomial expansions in internal coordinates in irreducible tensor representation. Vibrational energy levels are reported using global variational nuclear motion calculations with exact kinetic energy operator and a full account of the tetrahedral symmetry of CH4. Our best ab initio surface including above-mentioned contributions provides the rms (obs.-calc.) errors of less than 0.11 cm(-1) for vibrational band centers below 4700 cm(-1), and similar to 0.3 cm(-1) for all 229 assigned experimentally determined vibrational levels up to the Icosad range <7900 cm(-1) without empirically adjusted parameters. These results improve the accuracy of ab initio methane vibrational predictions by more than an order of magnitude with respect to previous works. This is an unprecedented accuracy of first-principles calculations of a five-atomic molecule for such a large data set. New ab initio potential results in significantly better band center predictions even in comparison with best available empirically corrected potential energy surfaces. The issues related to the basis set extrapolation and an additivity of various corrections at this level of accuracy are discussed. Published by AIP Publishing.
机译:使用延长电子结构耦合簇计算构造甲烷分子的全部9维AB Initio潜在能量表面,随着x基数的增加:CC-PVXZ(x = 3,4,5,6), AUG-CC-ACVXZ(x = 3,4,5)和CC-PCVXZ-F12(x = 3,4)。占包括三倍和四极兴奋的高阶动态电子相关性,以及相对论和对角线出生的oppenheimer击穿校正。分析潜在功能是IRRAFIBLIBLE TENTOR表示中的内部坐标中的非多项式扩展参数化。使用具有精确动能运算符的全局变分核运动计算报告振动能量水平,并完全陈述CH4的四面体对称性。我们最好的AB Initio表面包括上述贡献,提供了小于0.11cm(-1)的RMS(OBS.-calc。)振动带中心,振动频带中心低于4700cm(-1),类似于0.3cm(-1 )对于所有229,在没有经验调整的参数的情况下,所有229分配到ICOSAD范围<7900cm(-1)的振动水平。这些结果通过相对于先前的作品提高了AB Initio甲烷振动预测的准确性。这是一种前所未有的第一原理计算为这么大数据集的五原子分子的计算。即使与最佳可用的经验校正的潜在能量表面相比,新的AB Initio潜力也会导致明显更好的频段预测。讨论了与基础集外推的问题以及在这种精度水平的各种校正的增加的问题。通过AIP发布发布。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号