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将人类知识嵌入材料筛选流程中作为过滤器,以识别新型可合成无机材料。

Embedding human knowledge in material screening pipeline as filters to identify novel synthesizable inorganic materials.

作者信息

Das Basita, Ji Kangyu, Sheng Fang, McCall Kyle M, Buonassisi Tonio

机构信息

Dept. of Mechanical Engineering, Massachusetts Institute of Technology, 77 Mass Ave., Cambridge, USA.

Department of Materials Science and Engineering, University of Texas at Dallas, Richardson, USA.

出版信息

Faraday Discuss. 2025 Jan 14;256(0):587-600. doi: 10.1039/d4fd00120f.

Abstract

How might one embed a chemist's knowledge into an automated materials-discovery pipeline? In generative design for inorganic crystalline materials, generating candidate compounds is no longer a bottleneck - there are now synthetic datasets of millions of compounds. However, weeding out unsynthesizable or difficult to synthesize compounds remains an outstanding challenge. Post-generation "filters" have been proposed as a means of embedding human domain knowledge, either in the form of scientific laws or rules of thumb. Examples include charge neutrality, electronegativity balance, and energy above hull. Some filters are "hard" and some are "soft" - for example, it is difficult to envision creating a stable compound while violating the rule of charge neutrality; however, several compounds break the Hume-Rothery rules. It is therefore natural to wonder: can one compile a comprehensive list of "filters" that embed domain knowledge, adopt a principled approach to classifying them as either non-conditional or conditional "filters," and envision a software environment to implement combinations of these in a systematic manner? In this commentary we explore such questions, "filters" for screening of novel inorganic compounds for synthesizability.

摘要

如何将化学家的知识融入自动化材料发现流程中?在无机晶体材料的生成式设计中,生成候选化合物已不再是瓶颈——现在有数以百万计化合物的合成数据集。然而,剔除无法合成或难以合成的化合物仍是一个突出的挑战。已有人提出生成后“过滤器”,作为嵌入人类领域知识的一种方式,这些知识可以是科学定律或经验法则的形式。例子包括电荷中性、电负性平衡以及高于凸包的能量。有些过滤器是“硬性”的,有些是“软性”的——例如,很难想象在违反电荷中性规则的情况下创造出稳定的化合物;然而,有几种化合物打破了休姆-罗瑟里规则。因此很自然会想:能否编制一份嵌入领域知识的“过滤器”综合列表,采用一种有原则的方法将它们分类为无条件或有条件的“过滤器”,并设想一个软件环境来系统地实现这些过滤器的组合?在这篇评论中,我们探讨此类问题,即用于筛选新型无机化合物合成可行性的“过滤器”。

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