Dimensions, structure, and morphology variations of carbon-based materials for hydrogen storage: a review.

IF 4.5 0 MATERIALS SCIENCE, MULTIDISCIPLINARY
Shadykulova Assyl, Suleimenova Botakoz, Zholdayakova Saule
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引用次数: 0

Abstract

The swift and far-reaching evolution of advanced nanostructures and nanotechnologies has accelerated the research rate and extent, which has a huge prospect for the benefit of the practical demands of solid-state hydrogen storage implementation. Carbonaceous materials are of paramount importance capable of forming versatile structures and morphology. This review aims to highlight the influence of the carbon material structure, dimension, and morphology on the hydrogen storage ability. An extensive range of synthesis routes and methods produces diverse micro/nanostructured materials with superb hydrogen-storing properties. The structures of carbon materials used for hydrogen adsorption, from 0 to 3D, and fabrication methods and techniques are discussed. Besides highlighting the striking merits of nanostructured materials for hydrogen storage, remaining challenges and new research avenues are also considered.

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碳基储氢材料的尺寸、结构和形态变化:综述。
先进纳米结构和纳米技术的迅速而深远的发展,加快了研究的速度和程度,为实现固态储氢的实际需求提供了巨大的前景。碳质材料是最重要的,能够形成多种结构和形态。本文综述了碳材料的结构、尺寸和形貌对储氢能力的影响。广泛的合成路线和方法生产出各种具有优异储氢性能的微/纳米结构材料。讨论了用于氢吸附的碳材料的0 - 3D结构、制备方法和技术。除了强调纳米结构储氢材料的显著优点外,还考虑了存在的挑战和新的研究途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
0.70
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