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Synthesis, Characterisation and Application of Iridium(III) Photosensitisers for Catalytic Water Reduction

机译:铱(III)光催化还原剂的合成,表征及应用

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摘要

The synthesis of novel, monocationic iridium(III) photosensitisers (Ir-PSs) with the general formula [IrIII(C^N)2(N^N)]+ (C^N: cyclometallating phenylpyridine ligand, N^N: neutral bidentate ligand) is described. The structures obtained were examined by cyclic voltammetry, UV/Vis and photoluminescence spectroscopy and X-ray analysis. All iridium complexes were tested for their ability as photosensitisers to promote homogeneously catalysed hydrogen generation from water. In the presence of [HNEt3][HFe3(CO)11] as a water-reduction catalyst (WRC) and triethylamine as a sacrificial reductant (SR), seven of the new iridium complexes showed activity. [Ir(6-iPr-bpy)(ppy)2]PF6 (bpy: 2,2′-bipyridine, ppy: 2-phenylpyridine) turned out to be the most efficient photosensitiser. This complex was also tested in combination with other WRCs based on rhodium, platinum, cobalt and manganese. In all cases, significant hydrogen evolution took place. Maximum turnover numbers of 4550 for this Ir-PS and 2770 for the Fe WRC generated in situ from [HNEt3][HFe3(CO)11] and tris[3,5-bis(trifluoromethyl)phenyl]phosphine was obtained. These are the highest overall efficiencies for any Ir/Fe water-reduction system reported to date. The incident photon to hydrogen yield reaches 16.4 % with the best system.
机译:通式为[Ir III (C ^ N) 2 (N ^ N)]的新型单阳离子铱(III)光敏剂(Ir-PSs)的合成描述了sup> + (C ^ N:环金属化的苯基吡啶配体,N ^ N:中性双齿配体)。通过循环伏安法,UV / Vis,光致发光光谱法和X射线分析检查获得的结构。测试了所有铱配合物作为光敏剂的能力,以促进从水中均相催化的氢生成。在[HNEt 3 ] [HFe 3 (CO) 11 ]作为减水催化剂(WRC)和三乙胺作为牺牲还原剂(SR)中,有七个新的铱配合物具有活性。结果发现[Ir(6-iPr-bpy)(ppy) 2 ] PF 6 (bpy:2,2'-联吡啶,ppy:2-苯基吡啶)最有效的光敏剂。还对该复合物与其他基于铑,铂,钴和锰的WRC进行了测试。在所有情况下,都有大量的氢气逸出。 [HNEt 3 ] [HFe 3 (CO) 11 原位生成的Ir-PS的最大周转数为4550,Fe WRC的最大周转数为2

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