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Review of one-dimensional and two-dimensional nanostructured materials for hydrogen generation

机译:一维和二维纳米结构材料的研究进展

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摘要

Hydrogen is an attractive alternative to fossil fuels in terms of environmental and other advantages. Of the various production methods for H2, photocatalysis requires further development so that it can be applied economically on an industrial scale. One- and two-dimensional nanostructures in both pristine and modified forms have shown great potential as catalysts in the generation of H2. We review here recent developments in these nanostructure catalysts and their efficiency in the generation of H2 under UV/visible/simulated solar light. Despite much research effort, many photocatalysts do not yet meet the practical requirements for the generation of H2, such as visible light activity. H2 production is dependent on a variety of parameters and factors. To meet future energy demands, several challenges in H2 production still need to be solved. We address here the factors that influence the efficiency of H2 production and suggest alternatives. The nanostructures are classified based on their morphology and their efficiency is considered with respect to the influencing parameters. We suggest effective ways of engineering catalyst combinations to overcome the current performance barriers. © the Owner Societies 2015.
机译:就环境和其他优势而言,氢是化石燃料的有吸引力的替代品。在H 2的各种生产方法中,光催化需要进一步发展,以便可以在工业规模上经济地应用。原始形式和修饰形式的一维和二维纳米结构已显示出作为生成H2催化剂的巨大潜力。我们在这里回顾这些纳米结构催化剂的最新进展及其在紫外线/可见光/模拟太阳光下产生氢气的效率。尽管进行了大量研究,但许多光催化剂仍不能满足生成H2的实际要求,例如可见光活性。氢气的产生取决于各种参数和因素。为了满足未来的能源需求,仍然需要解决氢气生产中的一些挑战。我们在这里讨论影响氢气生产效率的因素,并提出替代方案。纳米结构根据其形态进行分类,并根据影响参数考虑其效率。我们提出了工程催化剂组合的有效方法,以克服当前的性能障碍。 ©业主协会2015。

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