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首页> 外文期刊>ACS combinatorial science >Development of a High-Throughput Screening Method for Oxide-Ion Conductors and Its Application to Bismuth-Based Oxide Library Thin Films
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Development of a High-Throughput Screening Method for Oxide-Ion Conductors and Its Application to Bismuth-Based Oxide Library Thin Films

机译:氧化物离子导体的高通量筛选方法的研制及其在铋基氧化物库薄膜中的应用

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To accelerate material discovery, we develop a screening method for oxide-ion conductors that comprises combinatorial synthesis using chemical-solution deposition and high-throughput measurements using X-ray diffraction and conductivity. The present method allows us to form an arbitrary and uniform composition within an evaluation area at an arbitrary position in the library on a substrate. This screening method is applied to ABi(2)Zr(x)(Nb1-yTay)(1-x)O-9 bismuth-layered compounds, which are known to have relatively high oxide-ion conductivities but are yet to be examined thoroughly. By making systematic thin-film libraries for A = Sr or Ca, we aim to find the optimized composition. The total time required for synthesis, phase identification, and conductivity measurements is found to be significantly shorter than that with the conventional method, and the maximum oxide-ion conductivity of this compound in the libraries reaches 10(-3) S/cm at 800 degrees C.
机译:为了加速材料发现,我们开发了一种用于氧化离子导体的筛选方法,其包括使用X射线衍射和电导率的化学溶液沉积和高通量测量的组合合成。 本方法允许我们在基板上的文库中的任意位置形成一个任意和均匀的组合物。 该筛选方法应用于ABI(2)Zr(X)(NB1-YTAY)(1-X)O-9铋层状化合物,已知具有相对高的氧化离子离子传导性,但尚未彻底检查 。 通过为A = SR或CA制定系统的薄膜库,我们的目标是找到优化的组合物。 发现合成,相位鉴定和电导率测量所需的总时间明显短于与常规方法的常规方法,并且本文中该化合物的最大氧化物离子电导率在800处达到10(3)S / cm C.

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