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Geometry optimizations of open-shell systems with the fragment molecular orbital method

机译:碎片分子轨道方法对开壳系统的几何优化

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摘要

The ability to perform geometry optimizations on large molecular systems is desirable for both closed- and open-shell species. In this work, the restricted open-shell Hartree-Fock (ROHF) gradients for the fragment molecular orbital (FMO) method are presented. The accuracy of the gradients is tested, and the ability of the method to reproduce adiabatic excitation energies is also investigated. Timing comparisons between the FMO method and full ab initio calculations are also performed, demonstrating the efficiency of the FMO method in modeling large open-shell systems.
机译:对于闭壳和开壳物种,都需要在大分子系统上执行几何优化的能力。在这项工作中,提出了碎片分子轨道(FMO)方法的受限开壳Hartree-Fock(ROHF)梯度。测试了梯度的准确性,还研究了该方法重现绝热激发能的能力。还进行了FMO方法与完整的从头计算之间的时序比较,从而证明了FMO方法在大型开放式壳体系统建模中的效率。

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