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Energy storage applications of activated carbons: supercapacitors and hydrogen storage

机译:活性炭的储能应用:超级电容器和储氢

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摘要

Porous carbons have several advantageous properties with respect to their use in energy applications that require constrained space such as in electrode materials for supercapacitors and as solid state hydrogen stores. The attractive properties of porous carbons include, ready abundance, chemical and thermal stability, ease of processability and low framework density. Activated carbons, which are perhaps the most explored class of porous carbons, have been traditionally employed as catalyst supports or adsorbents, but lately they are increasingly being used or find potential applications in the fabrication of supercapacitors and as hydrogen storage materials. This manuscript presents the state-of-the-art with respect to the preparation of activated carbons, with emphasis on the more interesting recent developments that allow better control or maximization of porosity, the use of cheap and readily available precursors and tailoring of morphology. This review will show that the renewed interest in the synthesis of activated carbons is matched by intensive investigations into their use in supercapacitors, where they remain the electrode materials of choice. We will also show that activated carbons have been extensively studied as hydrogen storage materials and remain a strong candidate in the search for porous materials that may enable the so-called Hydrogen Economy, wherein hydrogen is used as an energy carrier. The use of activated carbons as energy materials has in the recent past and is currently experiencing rapid growth, and this review aims to present the more significant advances.
机译:多孔碳就其在需要受限空间的能源应用中的使用而言,例如在超级电容器的电极材料中以及作为固态氢储存器的用途方面,具有几种有利的特性。多孔碳的吸引人的特性包括,即刻丰度,化学和热稳定性,易加工性和低骨架密度。活性炭,可能是多孔碳中最被研究的一类,传统上已被用作催化剂载体或吸附剂,但近来它们越来越多地被使用或在超级电容器的制造中以及在储氢材料中发现潜在的应用。该手稿介绍了有关活性炭制备的最新技术,重点介绍了更有趣的最新进展,这些进展可以更好地控制或最大化孔隙率,使用廉价易得的前体并调整形态。这项审查将表明,对活性炭合成的新兴趣与对超级电容器中超级电容器用途的深入研究相吻合,在超级电容器中超级电容器仍然是首选的电极材料。我们还将表明,活性炭已被广泛地研究为储氢材料,并且在寻找可实现所谓氢经济的多孔材料的研究中仍然是强有力的候选者,其中氢被用作能量载体。活性炭作为能源材料的使用在最近已经开始,并且正在经历快速的增长,本综述旨在介绍更重要的进展。

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  • 来源
    《Energy & environmental science》 |2014年第4期|1250-1280|共31页
  • 作者

    Marta Sevilla; Robert Mokaya;

  • 作者单位

    Instituto National del Carbon (CSIC), P.O. Box 73, 33080 Oviedo, Spain;

    School of Chemistry, University of Nottingham, University Park, Nottingham NG7 2RD, UK;

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  • 正文语种 eng
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