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Combinatorial synthesis and high-throughput photopotential and photocurrent screening of mixed-metal oxides for photoelectrochemical water splittingudud

机译:用于光电化学水分解的混合金属氧化物的组合合成及高通量光势和光电流筛选 ud

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摘要

A high-throughput method has been developed using a commercial piezoelectric inkjet printer for synthesis and characterization of mixed-metal oxide photoelectrode materials for water splitting. The printer was used to deposit metal nitrate solutions onto a conductive glass substrate. The deposited metal nitrate solutions were then pyrolyzed to yield mixed-metal oxides that contained up to eight distinct metals. The stoichiometry of the metal oxides was controlled quantitatively, allowing for the creation of vast libraries of novel materials. Automated methods were developed to measure the open-circuit potentials (Eoc), short-circuit photocurrent densities (Jsc), and current density vs. applied potential (J–E) behavior under visible light irradiation. The high-throughput measurement of Eoc is particularly significant because open-circuit potential measurements allow the interfacial energetics to be probed regardless of whether the band edges of the materials of concern are above, close to, or below the values needed to sustain water electrolysis under standard conditions. The Eoc measurements allow high-throughput compilation of a suite of data that can be associated with the composition of the various materials in the library, to thereby aid in the development of additional screens and to form a basis for development of theoretical guidance in the prediction of additional potentially promising photoelectrode compositions.
机译:已经使用商用压电喷墨打印机开发了一种高通量方法,用于合成和表征用于水分解的混合金属氧化物光电极材料。打印机用于将金属硝酸盐溶液沉积到导电玻璃基板上。然后将沉积的金属硝酸盐溶液热解,以生成包含多达八种不同金属的混合金属氧化物。金属氧化物的化学计量是定量控制的,从而允许创建大量新颖的材料库。开发了自动方法来测量可见光照射下的开路电势(Eoc),短路光电流密度(Jsc)以及电流密度与外加电势(J–E)行为。 Eoc的高通量测量尤为重要,因为开路电势测量可以探测界面能,而无论所关注材料的能带边缘是高于,接近还是低于在此条件下维持水电解所需的值。标准条件。通过Eoc测量,可以高通量汇编一组可以与库中各种材料的成分相关联的数据,从而有助于开发其他屏幕,并为预测中理论指导的开发奠定基础其他潜在有希望的光电极组合物。

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