Materials Science Ontology Design with an Analytico-Synthetic Facet Analysis Framework

Jane Greenberg, Scott J. Mcclellan, Xintong Zhao, Elijah J Kellner, D. Venator, Haoran Zhao, Jiacheng Shen, Xiaohua Hu, Yuan An
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Abstract

Researchers across nearly every discipline seek to leverage ontologies for knowledge discovery and computational tasks; yet, the number of machine readable materials science ontologies is limited. The work presented in this paper explores the Processing, Structure, Properties and Performance (PSPP) framework for accelerating the development of materials science ontologies. We pursue a case study framed by the creation of an Aerogel ontology and a Battery Cathode ontology and demonstrate the Helping Interdisciplinary Vocabulary Engineer for Materials Science (HIVE4MAT) as a proof of concept showing PSPP relationships. The paper includes background context covering materials science, the PSPP framework, and faceted analysis for ontologies. We report our research objectives, methods, research procedures, and results. The findings indicate that the PSPP framework offers a rubric that may help guide and potentially accelerate ontology development.
基于分析-合成面分析框架的材料科学本体设计
几乎所有学科的研究人员都在寻求利用本体进行知识发现和计算任务;然而,机器可读材料科学本体的数量是有限的。本文介绍的工作探讨了加速材料科学本体发展的加工、结构、性能和性能(PSPP)框架。我们通过创建气凝胶本体和电池阴极本体来进行案例研究,并演示了帮助材料科学跨学科词汇工程师(HIVE4MAT)作为展示PSPP关系的概念证明。本文的背景包括材料科学、PSPP框架和本体的面形分析。我们报告我们的研究目标、方法、研究程序和结果。这些发现表明,PSPP框架提供了一个可能有助于指导和潜在地加速本体开发的规则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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