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Applying machine learning to balance performance and stability of high energy density materials.

Authors :
Huang X
Li C
Tan K
Wen Y
Guo F
Li M
Huang Y
Sun CQ
Gozin M
Zhang L
Source :
IScience [iScience] 2021 Feb 26; Vol. 24 (3), pp. 102240. Date of Electronic Publication: 2021 Feb 26 (Print Publication: 2021).
Publication Year :
2021

Abstract

The long-standing performance-stability contradiction issue of high energy density materials (HEDMs) is of extremely complex and multi-parameter nature. Herein, machine learning was employed to handle 28 feature descriptors and 5 properties of detonation and stability of 153 HEDMs, wherein all 21,648 data used were obtained through high-throughput crystal-level quantum mechanics calculations on supercomputers. Among five models, namely, extreme gradient boosting regression tree (XGBoost), adaptive boosting, random forest, multi-layer perceptron, and kernel ridge regression, were respectively trained and evaluated by stratified sampling and 5-fold cross-validation method. Among them, XGBoost model produced the best scoring metrics in predicting the detonation velocity, detonation pressure, heat of explosion, decomposition temperature, and lattice energy of HEDMs, and XGBoost predictions agreed best with the 1,383 experimental data collected from massive literatures. Feature importance analysis was conducted to obtain data-driven insight into the causality of the performance-stability contradiction and delivered the optimal range of key features for more efficient rational design of advanced HEDMs.<br />Competing Interests: The authors declare no competing interests.<br /> (© 2021 The Author(s).)

Details

Language :
English
ISSN :
2589-0042
Volume :
24
Issue :
3
Database :
MEDLINE
Journal :
IScience
Publication Type :
Academic Journal
Accession number :
33748721
Full Text :
https://doi.org/10.1016/j.isci.2021.102240