Muraoka Koki, Chaikittisilp Watcharop, Okubo Tatsuya
Department of Chemical System Engineering, The University of Tokyo 7-3-1 Hongo, Bunkyo-ku Tokyo 113-8656 Japan
Chem Sci. 2020 Jul 20;11(31):8214-8223. doi: 10.1039/d0sc03075a.
Organic structure-directing agents (OSDAs) are often employed for synthesis of zeolites with desired frameworks. prediction of such OSDAs has mainly relied on the interaction energies between OSDAs and zeolite frameworks, without cost considerations. For practical purposes, the cost of OSDAs becomes a critical issue. Therefore, the development of a computational prediction methodology that can speed up the trial-and-error cycle in the search for less expensive OSDAs is desired. This study utilized a nature-inspired ant colony optimization method to predict physicochemically and/or economically preferable OSDAs, while also taking molecular similarity and heuristics of zeolite synthesis into consideration. The prediction results included experimentally known OSDAs, candidates having structures closely related to known OSDAs, and novel ones, suggesting the applicability of this approach.
有机结构导向剂(OSDAs)常用于合成具有所需骨架的沸石。此类OSDAs的预测主要依赖于OSDAs与沸石骨架之间的相互作用能,而未考虑成本因素。出于实际目的,OSDAs的成本成为一个关键问题。因此,需要开发一种计算预测方法,以加快寻找成本较低的OSDAs的试错周期。本研究利用受自然启发的蚁群优化方法来预测物理化学和/或经济上更优的OSDAs,同时还考虑了分子相似性和沸石合成的启发式方法。预测结果包括实验已知的OSDAs、结构与已知OSDAs密切相关的候选物以及新的候选物,表明了该方法的适用性。