A general-purpose material property data extraction pipeline from large polymer corpora using Natural Language Processing
arXiv:2209.13136 · doi:10.1038/s41524-023-01003-w
Abstract
The ever-increasing number of materials science articles makes it hard to infer chemistry-structure-property relations from published literature. We used natural language processing (NLP) methods to automatically extract material property data from the abstracts of polymer literature. As a component of our pipeline, we trained MaterialsBERT, a language model, using 2.4 million materials science abstracts, which outperforms other baseline models in three out of five named entity recognition datasets when used as the encoder for text. Using this pipeline, we obtained ~300,000 material property records from ~130,000 abstracts in 60 hours. The extracted data was analyzed for a diverse range of applications such as fuel cells, supercapacitors, and polymer solar cells to recover non-trivial insights. The data extracted through our pipeline is made available through a web platform at https://polymerscholar.org which can be used to locate material property data recorded in abstracts conveniently. This work demonstrates the feasibility of an automatic pipeline that starts from published literature and ends with a complete set of extracted material property information.
References in corpus (5)
- Domain-Specific Language Model Pretraining for Biomedical Natural Language Processing
- Snorkel: Rapid Training Data Creation with Weak Supervision
- Polymer Informatics: Current Status and Critical Next Steps
- Loss of New Ideas: Potentially Long-lasting Effects of the Pandemic on Scientists
- BOND: BERT-Assisted Open-Domain Named Entity Recognition with Distant Supervision
Cited by in corpus (4)
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