基于分子晶体序参数与K-means聚类的 TNT晶型转化有限温度弦研

Ling Ling Chang, Fu De Ren, Ying Zhe Liu, Zhong Xue Ce, Xiao Lei Wanc, Li Li Qiu, Zi Hui Menc, Yan Hong Wanc, Duan Lin Cao*

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

1 引用 (Scopus)

摘要

To reveal the molecular mechanism of the rare events of polymorphic transformation for explosive, two types of order parameter were constructed based on the bond distance (i.e., intermolecular distance), bond orientation, and molecular orientation.The enhanced sampling of the order parameter was performed by using K-means clustering algorithm based on Euclidean distance and weighted density.As a result, the conventional finite temperature string (FTS) method is improved for rare events based on molecular crystal order parameter and enhanced K-means clustering sampling, leading to a fast convergent of the free energy of the polymorphic transformation.By applying this method to investigate the polymorphic transformation of TNT, the "dimensional explosion" of the order parameter of molecular crystal is avoided, and the potential of mean force is obtained.The results not only verify the effectiveness of the FTS method based on molecular crystal order parameters and K-means clustering in the investigation of the polymorphic transformation for explosive, but also reveal the polymorphic transformation process between TNT(O) and TNT(M), namely surface-mediated, local initiation, and multi-nucleus asynchronous growth.

投稿的翻译标题FTS Study by K-means Clustering Sampling with Molecular Crystal Order Parameter for the Polymorphic Transformation of TNT
源语言繁体中文
页(从-至)545-552
页数8
期刊Huozhayao Xuebao/Chinese Journal of Explosives and Propellants
46
6
DOI
出版状态已出版 - 2023

关键词

  • K-means clustering sampling
  • TNT
  • finite temperature string (FTS)
  • molecular crystal order parameter
  • physical chemistry
  • polymorphic transformation

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引用此

Chang, L. L., Ren, F. D., Liu, Y. Z., Ce, Z. X., Wanc, X. L., Qiu, L. L., Menc, Z. H., Wanc, Y. H., & Cao, D. L. (2023). 基于分子晶体序参数与K-means聚类的 TNT晶型转化有限温度弦研. Huozhayao Xuebao/Chinese Journal of Explosives and Propellants, 46(6), 545-552. https://doi.org/10.14077/j.issn.1007-7812.202303029