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The Effective Fragment Molecular Orbital Method for Fragments Connected by Covalent Bonds

机译:共价键连接的碎片的有效碎片分子轨道方法

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摘要

We extend the effective fragment molecular orbital method (EFMO) into treating fragments connected by covalent bonds. The accuracy of EFMO is compared to FMO and conventional ab initio electronic structure methods for polypeptides including proteins. Errors in energy for RHF and MP2 are within 2 kcal/mol for neutral polypeptides and 6 kcal/mol for charged polypeptides similar to FMO but obtained two to five times faster. For proteins, the errors are also within a few kcal/mol of the FMO results. We developed both the RHF and MP2 gradient for EFMO. Compared to ab initio, the EFMO optimized structures had an RMSD of 0.40 and 0.44 Å for RHF and MP2, respectively.
机译:我们将有效片段分子轨道方法(EFMO)扩展到处理通过共价键连接的片段。将EFMO的准确性与FMO和传统的从头开始的电子结构方法(包括多肽)进行了比较。对于RHF和MP2,中性多肽的能量误差在2 kcal / mol之内,对于类似于FMO的带电多肽,能量误差在6 kcal / mol之内,但获得的速度却快2至5倍。对于蛋白质,误差也在FMO结果的几千卡/摩尔以内。我们为EFMO开发了RHF和MP2梯度。与从头开始相比,EFMO优化结构的RHF和MP2的RMSD分别为0.40和0.44Å。

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