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  1. Article

    Open Access

    An autonomous laboratory for the accelerated synthesis of novel materials

    To close the gap between the rates of computational screening and experimental realization of novel materials1,2, we introduce the A-Lab, an autonomous laboratory for the solid-state synthesis of inorganic powder...

    Nathan J. Szymanski, Bernardus Rendy, Yuxing Fei, Rishi E. Kumar, Tan** He in Nature (2023)

  2. Article

    Open Access

    Autonomous and dynamic precursor selection for solid-state materials synthesis

    Solid-state synthesis plays an important role in the development of new materials and technologies. While in situ characterization and ab-initio computations have advanced our understanding of materials synthe...

    Nathan J. Szymanski, Pragnay Nevatia, Christopher J. Bartel in Nature Communications (2023)

  3. Article

    Open Access

    Synthetic accessibility and stability rules of NASICONs

    In this paper we develop the stability rules for NASICON-structured materials, as an example of compounds with complex bond topology and composition. By first-principles high-throughput computation of 3881 pot...

    Bin Ouyang, **gyang Wang, Tan** He, Christopher J. Bartel in Nature Communications (2021)

  4. Article

    Open Access

    Physical descriptor for the Gibbs energy of inorganic crystalline solids and temperature-dependent materials chemistry

    The Gibbs energy, G, determines the equilibrium conditions of chemical reactions and materials stability. Despite this fundamental and ubiquitous role, G has been tabulated for only a small fraction of known inor...

    Christopher J. Bartel, Samantha L. Millican, Ann M. Deml in Nature Communications (2018)