AI Article Synopsis

  • The study addresses the need for efficient expansion of functional inorganic compounds in response to evolving energy and environmental demands in materials science.
  • By using in situ X-ray diffraction measurements during solid, liquid flux, and recrystallization processes, researchers can quickly identify new materials and optimize synthesis routes.
  • The method enables rapid discovery of compounds, revealing potential for faster material design alongside computational predictions.

Article Abstract

Rapid shifts in the energy, technological, and environmental demands of materials science call for focused and efficient expansion of the library of functional inorganic compounds. To achieve the requisite efficiency, we need a materials discovery and optimization paradigm that can rapidly reveal all possible compounds for a given reaction and composition space. Here we provide such a paradigm via in situ X-ray diffraction measurements spanning solid, liquid flux, and recrystallization processes. We identify four new ternary sulfides from reactive salt fluxes in a matter of hours, simultaneously revealing routes for ex situ synthesis and crystal growth. Changing the flux chemistry, here accomplished by increasing sulfur content, permits comparison of the allowable crystalline building blocks in each reaction space. The speed and structural information inherent to this method of in situ synthesis provide an experimental complement to computational efforts to predict new compounds and uncover routes to targeted materials by design.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4121826PMC
http://dx.doi.org/10.1073/pnas.1406211111DOI Listing

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