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Artificial hydrogenases: biohybrid and supramolecular systems for catalytic hydrogen production or uptake

机译:人工氢化酶:用于催化氢产生或吸收的生物杂交和超分子系统

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There is an urgent need for cheap, abundant and efficient catalysts as an alternative to platinum for hydrogen production and oxidation in (photo)electrolyzers and fuel cells. Hydrogenases are attractive solutions. These enzymes use exclusively nickel and iron in their active sites and function with high catalytic rates at the thermodynamic equilibrium. As an alternative, a number of biomimetic and bioinspired catalysts for H-2 production and/or uptake, based on Ni, Fe and Co, have been developed and shown to display encouraging performances. In this review we discuss specifically recent approaches aiming at incorporating these compounds within oligomeric and polymeric hosts. The latter are most often biological compounds (peptides, proteins, polysaccharides, etc.) but we also discuss non-biological scaffolds (synthetic polymers, Metal-organic-Frameworks, etc.) which can provide the appropriate environment to tune the activity and stability of the synthetic catalysts. These supramolecular catalytic systems thus define a class of original compounds so-called artificial hydrogenases.
机译:迫切需要廉价,丰富和高效的催化剂,以代替铂在(光)电解器和燃料电池中产生氢气和氧化。氢化酶是有吸引力的解决方案。这些酶仅在其活性位点使用镍和铁,并在热力学平衡时以高催化速率起作用。作为替代方案,已开发出许多基于Ni,Fe和Co的仿生和仿生H-2生产和/或吸收催化剂,并显示出令人鼓舞的性能。在这篇综述中,我们专门讨论旨在将这些化合物掺入低聚和聚合主体中的最新方法。后者通常是生物化合物(肽,蛋白质,多糖等),但我们还讨论了非生物支架(合成聚合物,金属有机框架等),它们可以提供合适的环境来调节活性和稳定性。合成催化剂。因此,这些超分子催化体系定义了一类原始化合物,称为人工氢化酶。

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