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In situ studies of a platform for metastable inorganic crystal growth and materials discovery

机译:用于亚稳态无机晶体生长和材料发现的平台的原位研究

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摘要

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.
机译:材料科学对能源,技术和环境的要求日新月异,要求对功能性无机化合物库进行集中和有效的扩展。为了达到所需的效率,我们需要一种材料发现和优化范例,可以快速揭示给定反应和组成空间中所有可能的化合物。在这里,我们通过横跨固体,液体通量和重结晶过程的原位X射线衍射测量提供了这种范例。我们在几个小时内从活性盐通量中发现了四个新的三元硫化物,同时揭示了非原位合成和晶体生长的途径。改变助焊剂的化学性质(此处通过增加硫含量来实现)可以比较每个反应空间中允许的晶体结构单元。这种原位合成方法固有的速度和结构信息为预测新化合物并通过设计揭示通往目标材料的途径提供了实验补充。

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