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Parametrization and Benchmark of Long-Range Corrected DFTB2 for Organic Molecules

机译:用于有机分子的远程校正DFTB2的参数化和基准

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摘要

We present the parametrization and benchmark of long-range corrected second-order density functional tight binding (DFTB), LC-DFTB2, for organic and biological molecules. The LC-DFTB2 model not only improves fundamental orbital energy gaps but also ameliorates the DFT self-interaction error and overpolarization problem, and further improves charge-transfer excited states significantly. Electronic parameters for the construction of the DFTB2 Hamiltonian as well as repulsive potentials were optimized for molecules containing C, H, N, and O chemical elements. We use a semiautomatic parametrization scheme based on a genetic algorithm. With the new parameters, LC-DFTB2 describes geometries and vibrational frequencies of organic molecules similarly well as third-order DFTB3/3OB, the de facto standard parametrization based on a GGA functional. LC-DFTB2 performs well also for atomization and reaction energies, however, slightly less satisfactorily than DFTB3/3OB.
机译:我们介绍了远程校正的二阶密度功能紧密结合(DFTB),LC-DFTB2的参数化和基准,用于有机和生物分子。 LC-DFTB2模型不仅改善了基本的轨道能量差距,还可以改善DFT自交互误差和过分动化问题,并进一步提高了电荷转移激发状态。 针对含有C,H,N和O化学元素的分子优化了DFTB2 Hamiltonian的电子参数以及排斥潜力。 我们使用基于遗传算法的半自动参数化方案。 利用新的参数,LC-DFTB2描述了有机分子的几何和振动频率,与三阶DFTB3 / 3B,基于GGA功能的De Facto标准参数化。 LC-DFTB2也适用于雾化和反应能量,然而,比DFTB3 / 3ob略令人满意。

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