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Commentary: The Materials Project: A materials genome approach to accelerating materials innovation

Anubhav JainLawrence Berkeley National Laboratory 1 , Berkeley 94720, California, USAShyue Ping OngMassachusetts Institute of Technology 2 , Cambridge 02139, Massachusetts, USAGeoffroy HautierUniversité catholique de Louvain 3 , Louvain-la-Neuve, BelgiumWei ChenLawrence Berkeley National Laboratory 1 , Berkeley 94720, California, USAWilliam D. RichardsMassachusetts Institute of Technology 2 , Cambridge 02139, Massachusetts, USAStephen DacekMassachusetts Institute of Technology 2 , Cambridge 02139, Massachusetts, USAShreyas CholiaLawrence Berkeley National Laboratory 1 , Berkeley 94720, California, USADan GunterLawrence Berkeley National Laboratory 1 , Berkeley 94720, California, USADavid SkinnerLawrence Berkeley National Laboratory 1 , Berkeley 94720, California, USAGerbrand CederMassachusetts Institute of Technology 2 , Cambridge 02139, Massachusetts, USAKristin A. PerssonLawrence Berkeley National Laboratory 1 , Berkeley 94720, California, USA
2013en
ABI

Аннотация

Accelerating the discovery of advanced materials is essential for human welfare and sustainable, clean energy. In this paper, we introduce the Materials Project (www.materialsproject.org), a core program of the Materials Genome Initiative that uses high-throughput computing to uncover the properties of all known inorganic materials. This open dataset can be accessed through multiple channels for both interactive exploration and data mining. The Materials Project also seeks to create open-source platforms for developing robust, sophisticated materials analyses. Future efforts will enable users to perform ‘‘rapid-prototyping’’ of new materials in silico, and provide researchers with new avenues for cost-effective, data-driven materials design.

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