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首页> 外文期刊>RSC Advances >Graphene entanglement in a mesoporous resorcinol–formaldehyde matrix applied to the nanoconfinement of LiBH4 for hydrogen storage
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Graphene entanglement in a mesoporous resorcinol–formaldehyde matrix applied to the nanoconfinement of LiBH4 for hydrogen storage

机译:介孔间苯二酚-甲醛基质中的石墨烯缠结应用于LiBH 4 的纳米约束下以储氢

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A new, easy and versatile method for graphene inclusion within resorcinol–formaldehyde is presented and applied to the nanoconfinement of LiBH4. After the initial formation of a graphene hydrogel, the resin precursors were allowed to diffuse through the aqueous phase at room temperature. Depending on the precursor's concentration, after curing and pyrolysis, the materials presented a specific area of about 600 m2 g?1, with a pore size as low as 6.1 nm without macropores, and pore volume as high as 1.53 cm3 g?1. Once filled with LiBH4 by melt-infiltration, the differential scanning calorimetry (DSC) of these materials was typical of nanoconfined hydrides, with broader, flatter and lower transition, melting and decomposition temperatures. Hydrogen release was confirmed for temperatures as low as 253 °C in the presence of graphene, with a total hydrogen release of 13 wt% at 400 °C, close to the expected theoretical value. The absence of diborane formation was confirmed by IR and is a good indication of these materials' reversibility. After rehydrogenation at 400 °C for 5 h under 60 bar H2, the hydrogen release was close to 6 wt%. Microscopic observations and pore-size analysis indicated that the presence of graphene could be beneficial to the pore filling.
机译:提出了一种新的,简便且通用的石墨烯包埋在间苯二酚-甲醛中的方法,并将其应用于LiBH 4 的纳米约束。在初始形成石墨烯水凝胶之后,在室温下使树脂前体扩散通过水相。根据前驱物的浓度,固化和热解后,材料的比表面积约为600 m 2 g 1 < / small>,孔径低至6.1 nm,无大孔,孔径高至1.53 cm 3 g ?1 。这些材料一旦通过熔渗法被LiBH 4 填充,差示扫描量热法(DSC)是纳米受限氢化物的典型特征,具有更宽,更平坦和更低的转变,熔化和分解温度。在石墨烯存在下,低至253°C的温度下已确认有氢释放,在400°C下总氢释放量为13 wt%,接近预期理论值。红外光谱证实没有乙硼烷形成,这很好地说明了这些材料的可逆性。在60 bar H 2 下于400°C氢化5小时后,氢释放量接近6 wt%。显微镜观察和孔径分析表明,石墨烯的存在可能有利于孔的填充。

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