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Quality Improvement of Few-Layers Defective Graphene from Biomass and Application for H2 Generation

机译:生物质能改善几层缺陷石墨烯的质量及其在氢气生成中的应用

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摘要

Pyrolysis of filmogenic natural polymers gives rise to the formation of films of few-layers defective, undoped, and doped graphenes with low electrical conductivity (3000 to 5000 Ω/sq). For the sake of valorization of biomass wastes, it would be of interest to decrease the density of structural defects in order to increase the conductivity of the resulting few-layers graphene samples. In the present study, analytical and spectroscopic evidence is provided showing that by performing the pyrolysis at the optimal temperature (1100 °C), under a low percentage of H2, a significant decrease in the density of defects related to the presence of residual oxygen can be achieved. This improvement in the quality of the resulting few-layers defective graphene is reflected in a decrease by a factor of about 3 or 5 for alginic acid and chitosan, respectively, of the electrical resistance. Under optimal conditions, few-layers defective graphene films with a resistance of 1000 Ω /sq were achieved. The electrode made of high-quality graphene prepared at 1100 °C under Ar/H2 achieved a H2 production of 3.62 µmol with a positive applied bias of 1.1 V under LED illumination for 16 h.
机译:成膜天然聚合物的热解导致形成了几层具有低电导率(3000至5000Ω/ sq)的缺陷,未掺杂和掺杂的石墨烯。为了使生物质废物物有所值,降低结构缺陷的密度以增加所得的几层石墨烯样品的电导率将是令人感兴趣的。在本研究中,提供的分析和光谱证据表明,通过在最佳温度(1100°C)下,在低百分比的H2下进行热解,可以显着降低与残留氧的存在有关的缺陷密度。取得成就。所得的几层缺陷石墨烯的质量的这种改善反映为藻酸和壳聚糖的电阻分别降低约3或5倍。在最佳条件下,获得了电阻为1000Ω/ sq的几层缺陷石墨烯薄膜。由高质量石墨烯制成的电极在Ar / H2下在1100°C下制备,在LED照明下持续16 h,产生的H2产生量为3.62 µmol,施加的正偏压为1.1V。

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