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Oxygen-rich microporous carbons with exceptional hydrogen\ud storage capacity

机译:富氧的微孔碳,具有出色的氢气\ ud 存储容量

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摘要

Porous carbons have been extensively investigated for hydrogen storage but, to date, appear to have an upper limit to their storage capacity. Here, in an effort to circumvent this upper limit, we explore the potential of oxygen-rich activated carbons. We describe cellulose acetatederived carbons that combine high surface area (3800 m2 g-1) and pore volume (1.8 cm3 g-1) that arise almost entirely (> 90%) from micropores, with an oxygen-rich nature. The carbons exhibit enhanced gravimetric hydrogen uptake (8.1 wt% total, and 7.0 wt% excess) at -196 ºC and 20 bar, rising to a total uptake of 8.9 wt% at 30 bar, and exceptional volumetric uptake of 44 g l-1 at 20 bar, and 48 g l-1 at 30 bar. At room temperature they store up to 0.8 wt% (excess) and 1.2 wt% (total) hydrogen at only 30 bar, and their isosteric heat of hydrogen adsorption is above 10 kJ mol-1.
机译:多孔碳已经被广泛地研究用于氢存储,但是迄今为止,似乎对其存储容量具有上限。在这里,为了避免这个上限,我们探索了富氧活性炭的潜力。我们描述了醋酸纤维素衍生的碳,这些碳结合了高表面积(3800 m2 g-1)和孔体积(1.8 cm3 g-1),它们几乎完全来自微孔(> 90%),具有富氧特性。碳在-196ºC和20 bar下显示出更高的重量氢吸收(总重量为8.1 wt%,过量7.0 wt%),在30 bar下增加至总重量8.9 wt%,并且体积吸收为44 g l-1在20巴下为48 g l-1在30巴下。在室温下,它们仅在30 bar的压力下可存储多达0.8 wt%(过量)和1.2 wt%(总)的氢,氢的等规吸附氢热量高于10 kJ mol-1。

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