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首页> 外文期刊>Chemistry: A European journal >N-Doped Graphene Derived from Biomass as a Visible-Light Photocatalyst for Hydrogen Generation from Water/Methanol Mixtures
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N-Doped Graphene Derived from Biomass as a Visible-Light Photocatalyst for Hydrogen Generation from Water/Methanol Mixtures

机译:源自生物质的N掺杂石墨烯作为可见光催化剂,用于从水/甲醇混合物中产生氢气

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摘要

There is much current interest in developing graphene- based materials as photocatalysts, particularly in the field of solar fuels and the photocatalytic generation of hydrogen. Graphene is a versatile material allowing different modification strategies to improve its activity. Thus, in the present manuscript we report that, in contrast to the lack of photocatalytic activity of undoped graphene, nitrogen doping introduces UV- and visible-light activity for hydrogen evolution; the efficiency of the material depends on the preparation conditions. The N-doped graphene is obtained by pyrolysis under an inert atmosphere of natural chitosan, which is considered a biomass waste, followed by ultrasound exfoliation, without the need of oxidation and reconstitution. The main parameter controlling the residual amount of nitrogen and the resulting photocatalytic activity is the pyrolysis temperature that produces an optimal material when the thermal treatment is carried out at 900℃. Due to the fact that, in contrast to graphene oxide, N-doped graphene exhibits an almost “neutral” absorption spectrum, the material exhibits photocatalytic activity upon UV- (355 nm) and visible-light (532 nm) irradiation, and is able to generate hydrogen upon simulated sunlight illumination.
机译:当前,开发石墨烯基材料作为光催化剂引起了人们的极大兴趣,特别是在太阳能和氢的光催化领域。石墨烯是一种通用材料,允许使用不同的修饰策略来改善其活性。因此,在本手稿中,我们报告说,与未掺杂的石墨烯缺乏光催化活性相反,氮掺杂引入了紫外线和可见光活性来释放氢。材料的效率取决于制备条件。通过在天然壳聚糖(被视为生物质废物)的惰性气氛下热解获得N掺杂的石墨烯,然后进行超声波剥落,而无需氧化和重构。控制氮残留量和产生的光催化活性的主要参数是热解温度,当在900℃进行热处理时,热解温度可生成最佳材料。由于与氧化石墨烯相反,N掺杂的石墨烯表现出几乎“中性”的吸收光谱,因此该材料在UV(355 nm)和可见光(532 nm)照射下表现出光催化活性,并且能够在模拟的阳光照射下产生氢气。

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