CSIR-Advanced Materials and Processes Research Institute, Bhopal, Madhya Pradesh, 462026, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.
ChemSusChem. 2022 Jun 8;15(11):e202200281. doi: 10.1002/cssc.202200281. Epub 2022 May 9.
It is estimated that all fossil fuels will be depleted by 2060 if we continue to use them at the present rate. Therefore, there is an unmet need for an alternative source of energy with high calorific value. In this regard, hydrogen is considered the best alternative renewable fuel that could be used in practical conditions. Accordingly, researchers are looking for an ideal hydrogen storage system under ambient conditions for feasible applications. In many respects, carbon-based sorbents have emerged as the best possible hydrogen storage media. These carbon-based sorbents are cost-effective, eco-friendly, and readily available. In this Review, the present status of carbon-based materials in promoting solid-state hydrogen storage technologies at the operating temperature and pressure was reported. Experimental studies have shown that some carbon-based materials such as mesoporous graphene and doped carbon nanotubes may have hydrogen storage uptake of 3-7 wt %, while some theoretical studies have predicted up to 13.79 wt % of hydrogen uptake at ambient conditions. Also, it was found that different methods used for carbon materials synthesis played a vital role in hydrogen storage performance. Eventually, this Review will be helpful to the scientific community for finding the competent material and methodology to investigate the existing hydrogen uptake issues at operating conditions.
据估计,如果我们继续以目前的速度使用化石燃料,那么到 2060 年所有的化石燃料都将耗尽。因此,我们需要一种具有高热值的替代能源,而氢能被认为是在实际条件下可用的最佳替代可再生燃料。因此,研究人员正在寻找一种在环境条件下的理想储氢系统,以实现可行的应用。在许多方面,基于碳的吸附剂已成为最佳的储氢介质。这些基于碳的吸附剂具有成本效益、环保且易于获得。在这篇综述中,报道了在工作温度和压力下促进固态储氢技术的基于碳的材料的现状。实验研究表明,一些基于碳的材料,如介孔石墨烯和掺杂碳纳米管,可能具有 3-7wt%的储氢量,而一些理论研究预测在环境条件下的储氢量高达 13.79wt%。此外,发现用于合成碳材料的不同方法对储氢性能起着至关重要的作用。最终,这篇综述将有助于科学界寻找合适的材料和方法来研究工作条件下的现有储氢问题。