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首页> 外文期刊>Electrochimica Acta >Combinatorial screening of photoanode materials - Uniform platform for compositional arrays and macroscopic electrodes
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Combinatorial screening of photoanode materials - Uniform platform for compositional arrays and macroscopic electrodes

机译:光电仪材料的组合筛选 - 构图阵列和宏观电极均匀平台

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AbstractA new work flow for high-throughput evaluation of complex metal oxides for water splitting relies on the use of commercial material printer for library production and scanning photoelectrochemical microscopy (SPECM) for hit identification. The printing process is optimized into several directions using as an example binary mixtures of Zn2+and Fe3+salts as precursors. Firstly, temporary barrier layers from eicosane are printed to confine the spots to a particular region and to allow larger drop sizes without merging of neighboring droplets. Secondly, a glycerol droplet is printed before the application of metal salts to serve as a carrier liquid that is non-volatile at room temperature. The metal salt solutions are printed from ethylene glycol solutions into the carrier droplets. With these precautions, the drop remained as liquid phase on the substrate with their lateral position locked by the eicosane grid. This avoids problems with the early crystallization of metal salts between successive printing and ensured complete mixing of the precursor solution. The liquid drops are then thermally processed by temperature-programmed heating up to 600?°C allowing the sequential drying of the spots, evaporation of the grid structures and formation of ferrites. The same procedure is used to cover macroscopic electrodes with a large number of spots of identical composition to verify hits in laboratory photoelectrochemical cells and to use photocurrent transient and chopped light voltammetry for their further characterization. Structural characterization of the composition (Zn0.17Fe0.83Ox) with highest activity is performed by Raman and photoelectron spectroscopy. The opportunity to use the same printing protocols to form compositional libraries as well as extended single component electrodes allows screening of medium-sized arrays and the fast transition to more in depth single component experimentation using exclusively standard laboratory instrumentation.Graphical abstractDisplay Omitted]]>
机译:<![CDATA [ 抽象 为复合金属氧化物的高通量评价用新的工作流的水分解依赖于使用的商业材料的打印机库生产和命中识别扫描显微镜光电(SPECM)。印刷过程中被优化为使用作为例子的Zn二元混合物几个方向 2 + 和Fe 3 + 盐作为前体。首先,从二十烷临时阻挡层印刷,以限制点到特定的区域,并允许更大的液滴尺寸,而不相邻液滴的合并。其次,前金属盐的应用为用作是在室温下不挥发的载体液体中的甘油液滴被打印。金属盐溶液选自乙二醇溶液到载体液滴打印。这些预防措施,液滴保持为与它们由二十烷栅格锁定横向位置的衬底上的液体相。这避免了问题的金属盐连续印刷和前体溶液的确保完全混合之间的初结晶。液滴然后通过热程序升温加热到600处理?℃下允许点的顺序干燥,网格结构和形成铁氧体的蒸发。相同的过程被用来覆盖具有大量相同的组合物的斑点的宏观电极,以验证在实验室光电化学电池命中和使用光电流瞬态和斩切光伏安法对其进一步表征。该组合物(锌的结构表征 0.17 0.83 0 X )具有最高活性是通过拉曼光谱和光电子能谱进行。使用相同的打印协议,以形成组成库以及扩展单个部件电极的机会,允许仅使用标准实验室仪器中型阵列和在深度单一组分试验的快速过渡到更多的筛选 图形抽象 显示中省略 ]]>

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