Energy-structure-function (ESF) maps can aid the targeted discovery of porous molecular crystals by predicting the stable crystalline arrangements along with their functions of interest. Here, we compute ESF maps for a series of rigid molecules that comprise either a triptycene or a spiro-biphenyl core, functionalized with six different hydrogen-bonding moieties. We show that the positioning of the hydrogen-bonding sites, as well as their number, has a profound influence on the shape of the resulting ESF maps, revealing promising structure-function spaces for future experiments. We also demonstrate a simple and general approach to representing and inspecting the high-dimensional data of an ESF map, enabling an efficient navigation of the ESF data to identify 'landmark' structures that are energetically favourable or functionally interesting. This is a step toward the automated analysis of ESF maps, an important goal for closed-loop, autonomous searches for molecular crystals with useful functions.
Digital navigation of energy-structure-function maps for hydrogen-bonded porous molecular crystals.
氢键多孔分子晶体的能量-结构-功能图的数字化导航
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作者:Zhao Chengxi, Chen Linjiang, Che Yu, Pang Zhongfu, Wu Xiaofeng, Lu Yunxiang, Liu Honglai, Day Graeme M, Cooper Andrew I
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2021 | 起止号: | 2021 Feb 5; 12(1):817 |
| doi: | 10.1038/s41467-021-21091-w | ||
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