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A light emitting diode based photoelectrochemical screener for distributed combinatorial materials discovery

机译:一种基于发光二极管的光电化学筛选器,用于分布式组合材料的发现

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摘要

Combinatorial approaches for targeted discovery of new materials require rapid screening systems to evaluate large numbers of new material compositions. High-throughput combinatorial materials discovery is a capital-intensive undertaking requiring sophisticated robotic sample preparation and rapid screening assays. A distributed approach to combinatorial materials discovery can achieve similar goals by increasing the breadth of participation and reducing the size of the capital investment. The discovery of new photoactive materials for solar fuels production demands a screening device to probe materials for electrochemical current production upon irradiation with visible light. We have developed a system that uses an array of pulsed light-emitting diodes (LEDs) synchronized with a two-electrode potentiostat that can measure the photoelectrochemical responses of combinatorial sample arrays deposited on conducting glass plates. Compared to raster scanning methods, this LED system trades spatial resolution for a substantial reduction in scan time.
机译:有针对性地发现新材料的组合方法需要快速筛选系统来评估大量新材料的成分。高通量组合材料的发现是一项资本密集型的​​工作,需要复杂的机器人样品制备和快速筛选测定。通过增加参与范围并减小资本投资的规模,分布式的组合材料发现方法可以实现相似的目标。用于太阳能燃料生产的新型光敏材料的发现需要一种筛选装置,以探测可见光照射下用于电化学电流生产的材料。我们已经开发了一种系统,该系统使用与两电极恒电位仪同步的脉冲发光二极管(LED)阵列,可以测量沉积在导电玻璃板上的组合样品阵列的光电化学响应。与光栅扫描方法相比,该LED系统以空间分辨率为代价,大大减少了扫描时间。

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  • 作者单位
  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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