论文标题

机器学习模型可预测计算结果,并具有计算催化所需的可传递性

Machine learning models predict calculation outcomes with the transferability necessary for computational catalysis

论文作者

Duan, Chenru, Nandy, Aditya, Adamji, Husain, Roman-Leshkov, Yuriy, Kulik, Heather J.

论文摘要

虚拟高通量筛选(VHT)和机器学习(ML)极大地加速了单位过渡金属催化剂的设计。然而,催化剂的VHT通常伴随着高计算失败率和浪费的计算资源,因为难以同时将所有机械性相关的反应性中间体收敛到预期的几何形状和电子状态。我们展示了一种动态分类器方法,即,一种卷积神经网络,该方法可以随时监测几何形状优化,并利用其良好的性能和可传递性来催化剂设计。我们表明,尽管仅接受一个反应性中间体接受训练,但动态分类器在甲烷至甲醇的自由基回弹机制的代表性催化循环中的所有反应性中间体都表现良好。动态分类器还推广到训练数据中没有化学不同的中间体和金属中心,而不会丧失准确性或模型置信度。我们将这种卓越的模型可传递性合理化为使用由密度功能理论计算产生的直立电子结构和几何信息以及动态分类器中的卷积层。结合模型不确定性量化,动态分类器节省了一半以上的计算资源,这些计算资源本来可以浪费在考虑的所有反应性中间体上的不成功计算上。

Virtual high throughput screening (VHTS) and machine learning (ML) have greatly accelerated the design of single-site transition-metal catalysts. VHTS of catalysts, however, is often accompanied with high calculation failure rate and wasted computational resources due to the difficulty of simultaneously converging all mechanistically relevant reactive intermediates to expected geometries and electronic states. We demonstrate a dynamic classifier approach, i.e., a convolutional neural network that monitors geometry optimization on the fly, and exploit its good performance and transferability for catalyst design. We show that the dynamic classifier performs well on all reactive intermediates in the representative catalytic cycle of the radical rebound mechanism for methane-to-methanol despite being trained on only one reactive intermediate. The dynamic classifier also generalizes to chemically distinct intermediates and metal centers absent from the training data without loss of accuracy or model confidence. We rationalize this superior model transferability to the use of on-the-fly electronic structure and geometric information generated from density functional theory calculations and the convolutional layer in the dynamic classifier. Combined with model uncertainty quantification, the dynamic classifier saves more than half of the computational resources that would have been wasted on unsuccessful calculations for all reactive intermediates being considered.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源