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Modification of Morse potential in conventional force fields for applying FPDP parameters

机译:修改传统力场中的莫尔斯电势以应用FPDP参数

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Although the Morse potential function is widely used in molecular modeling software, newer potential functions that possess more parameters provide greater accuracy. Against this backdrop, the Four-Parameter-Diatomic-Potential (FPDP) was selected for converting its parameter into those of the Morse potential due to the former’s resemblance to the latter. A pair of modified Morse indices was extracted by imposing equal force constant for infinitesimal bond stretching and equal energy integral for complete interatomic separation. Results reveal very good agreement for both bond compression and bond stretching. The developed parameter conversion would enable all FPDP parameters to be converted into the modified Morse parameters. Only minor algorithm alterations are required for incorporating the modified Morse function into molecular modeling packages that adopt the conventional Morse potential for describing 2-body bonded interaction.
机译:尽管摩尔斯势函数已在分子建模软件中广泛使用,但拥有更多参数的更新势函数可提供更高的准确性。在此背景下,由于前者与后者相似,因此选择了四参数双原子势能(FPDP)将其参数转换为莫尔斯电势。通过施加相等的力常数(用于无限小键拉伸)和施加相等的能量积分(用于完成原子间分离)来提取一对修改的Morse指数。结果表明,对于键压缩和键拉伸都具有很好的一致性。开发的参数转换将使所有FPDP参数都可以转换为修改的莫尔斯参数。仅需很小的算法更改即可将修改后的摩尔斯函数合并到采用常规摩尔斯电势来描述2体键合相互作用的分子建模程序包中。

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