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A ketone/alcohol polymer for cycle of electrolytic hydrogen-fixing with water and releasing under mild conditions

机译:一种酮/醇聚合物可与水进行固定氢电解循环并在温和条件下释放

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摘要

Finding a safe and efficient carrier of hydrogen is a major challenge. Recently, hydrogenated organic compounds have been studied as hydrogen storage materials because of their ability to stably and reversibly store hydrogen by forming chemical bonds; however, these compounds often suffer from safety issues and are usually hydrogenated with hydrogen at high pressure and/or temperature. Here we present a ketone (fluorenone) polymer that can be moulded as a plastic sheet and fixes hydrogen via a simple electrolytic hydrogenation at −1.5 V (versus Ag/AgCl) in water at room temperature. The hydrogenated alcohol derivative (the fluorenol polymer) reversibly releases hydrogen by heating (80 °C) in the presence of an aqueous iridium catalyst. Both the use of a ketone polymer and the efficient hydrogen fixing with water as a proton source are completely different from other (de)hydrogenated compounds and hydrogenation processes. The easy handling and mouldable polymers could suggest a pocketable hydrogen carrier.
机译:寻找安全有效的氢气载体是一项重大挑战。近来,由于氢化有机化合物通过形成化学键稳定和可逆地储存氢的能力,已经研究了它们作为氢储存材料。然而,这些化合物经常遭受安全问题,并且通常在高压和/或高温下用氢氢化。在这里,我们介绍了一种酮(芴酮)聚合物,可以将其模制成塑料片,并通过在室温下于-1.5 V(相对于Ag / AgCl)进行简单的电解氢化来固定氢。氢化的醇衍生物(芴醇聚合物)在含水铱催化剂的存在下加热(80℃)可逆地释放氢。酮聚合物的使用和用水作为质子源的有效氢固定都与其他(脱)氢化化合物和氢化过程完全不同。易于处理和可模制的聚合物可能暗示可携带的氢载体。

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