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Discovery and high-throughput screening of heteroleptic iridium complexes for photoinduced hydrogen production

机译:用于光诱导制氢的杂配铱配合物的发现和高通量筛选

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The catalytic process of photoinduced hydrogen generation via the reduction of water has been investigated. The use of parallel synthetic techniques has facilitated the synthesis of a 32 member library of heteroleptic iridium complexes that was screened, using high-throughput photophysical techniques, to identify six potential photosensitizers for use in catalytic photoinduced hydrogen production. A Pd/Ni thin film hydrogen selective sensor allowed for rapid quantification of hydrogen produced via illumination of aqueous systems of the photosensitizer, tris(2,2'-dipyridyl)dichlorocobalt ([Co(bpy)(3)]Cl-2), and triethanolamine (a sacrificial reductant) with ultra-bright light emitting diodes (LEDs). The use of an 8-well parallel photoreactor expedited the investigation of the hydrogen evolution process and facilitated mechanistic studies. All six compounds investigated produced considerably more hydrogen than commonly utilized photosensitizers and had relative quantum efficiencies of hydrogen production up to 37 times greater than that of Ru(bpy)(3)(2+).
机译:已经研究了通过还原水来光生氢的催化过程。平行合成技术的使用促进了杂铱铱配合物的32个成员库的合成,该库使用高通量光物理技术进行筛选,以鉴定出六种潜在的光敏剂,用于催化光诱导制氢。一种Pd / Ni薄膜氢选择性传感器,可以快速定量通过光敏剂三(2,2'-二吡啶基)二氯钴([Co(bpy)(3)] Cl-2)的水性体系的照射产生的氢,以及三乙醇胺(一种牺牲性还原剂)和超亮发光二极管(LED)。使用8孔平行光反应器可以加快氢析出过程的研究速度,并有助于机理研究。与常用的光敏剂相比,所研究的全部六种化合物产生的氢要多得多,并且氢产生的相对量子效率比Ru(bpy)(3)(2+)高出37倍。

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