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Ultrahigh surface area polypyrrole-based carbons with superior performance for hydrogen storage

机译:具有高储氢性能的超高表面积聚吡咯基碳

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摘要

[EN] Ultrahigh surface area carbons (3000–3500 m2 g−1) have been obtained via chemical activation of polypyrrole with KOH. The carbon materials exhibit large pore volumes (up to [similar]2.6 cm3 g−1) and possess two pore systems: one of pores in the micropore range ([similar]1.2 nm) and the other in the small mesopore range (2.2–3.4 nm). Some carbons also possess a significant proportion of 0.6 nm pores. Tuning of the carbon textural properties was achieved through the control of the activation parameters (temperature and amount of KOH). The carbons achieve an excellent hydrogen storage capacity of up to 7.03 wt% at −196 °C and 20 bar, which is the highest ever reported for one-step activated carbons and amongst the best for any porous material. The gravimetric hydrogen uptake of the carbons translates to a very attractive volumetric density of up to 37 g H2 L−1 at 20 bar. These carbons exhibit excellent gravimetric and volumetric capacity due to the fact that their high porosity is not at the detriment of packing density.
机译:[EN]通过KOH对聚吡咯进行化学活化获得了超高表面积碳(3000-3500 m2 g-1)。碳材料具有大的孔体积(最大[2.6 cm3 g-1]),并具有两个孔系统:一个在微孔范围内(大约1.2 nm),另一个在小中孔范围内(2.2– 3.4 nm)。一些碳还具有很大比例的0.6 nm孔。通过控制活化参数(温度和KOH量)可以实现碳质构性质的调整。这些碳在-196°C和20 bar下实现了出色的储氢能力,高达7.03 wt%,这是有史以来单步活性炭报道的最高储氢量,也是任何多孔材料中储氢量最好的。碳的重量氢吸收转化为在20 bar下高达37 g H2 L-1的极具吸引力的体积密度。这些碳由于其高孔隙率不会损害堆积密度,因此具有极好的重量和体积容量。

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