Instituto de Tecnología Química ( Universitat Politècnica de València-Consejo Superior de Investigaciones Científicas ), Avd. de los Naranjos s/n , 46022 Valencia , Spain.
Université de Rennes, CNRS, ISCR-UMR 6226, ScanMAT-UMS 2001 , F-35000 Rennes , France.
Inorg Chem. 2019 Nov 18;58(22):15443-15454. doi: 10.1021/acs.inorgchem.9b02529. Epub 2019 Oct 30.
Dihydrogen (H) production from sunlight should become one of the most important energy production means in the future. To reach this goal, low-cost and efficient photocatalysts still need to be discovered. Here we show that red near-IR luminescent metal cluster anions, once combined with pyrene-containing cations, are able to photocatalytically produce molecular hydrogen from water. The pyrene moieties act simultaneously as energy transmitters and as supramolecular linkers between the cluster anions and graphene. This association results in a hybrid material combining the emission abilities of pyrene and cluster moieties with the electronic conduction efficiency of graphene. Hydrogen evolution reaction (HER) studies show that this association induces a significant increase of H production compared to that produced separately by clusters or graphene. Considering the versatility of the strategy described to design this photocatalytic hybrid material, transition-metal clusters are promising candidates to develop new, environmentally friendly, and low-cost photocatalysts for HER.
从阳光中生产氢气应该成为未来最重要的能源生产手段之一。为了实现这一目标,仍需要发现低成本、高效率的光催化剂。在这里,我们展示了红色近红外发光金属团簇阴离子,一旦与含芘的阳离子结合,就能够光催化从水中产生分子氢。芘部分同时作为能量传输体和团簇阴离子与石墨烯之间的超分子连接体。这种结合形成了一种混合材料,结合了芘和团簇部分的发射能力以及石墨烯的电子传导效率。析氢反应(HER)研究表明,与单独由团簇或石墨烯产生的氢相比,这种结合会显著增加氢的产生。考虑到设计这种光催化混合材料的策略的多功能性,过渡金属团簇是开发用于 HER 的新型、环保和低成本光催化剂的有前途的候选材料。