Faisal Mohammad, Kim June-Hyung, Cho Young Whan, Jang Jae-Il, Suh Jin-Yoo, Shim Jae-Hyeok, Lee Young-Su
Center for Energy Materials Research, Korea Institute of Science and Technology, Seoul 02792, Korea.
Division of Materials Science and Engineering, Hanyang University, Seoul 04763, Korea.
Materials (Basel). 2021 Aug 25;14(17):4829. doi: 10.3390/ma14174829.
Titanium iron (TiFe) alloy is a room-temperature hydrogen-storage material, and it absorbs hydrogen via a two-step process to form TiFeH and then TiFeH. The effect of V addition in TiFe alloy was recently elucidated. The V substitution for Ti sublattice lowers / ratio, where and are the equilibrium plateau pressure for TiFe/TiFeH and TiFeH/TiFeH, respectively, and thus restricts the two-step hydrogenation within a narrow pressure range. The focus of the present investigation was to optimize the V content such that maximum usable storage capacity can be achieved for the target pressure range: 1 MPa for absorption and 0.1 MPa for desorption. The effect of V substitution at selective Ti or Fe sublattices was closely analyzed, and the alloy composition TiFeV displayed the best performance with ca. 1.5 wt.% of usable capacity within the target pressure range. At the same time, another issue in TiFe-based alloys, which is a difficulty in activation at room temperature, was solved by Ce addition. It was shown that 3 wt.% Ce dispersion in TiFe alloy imparted to it easy room-temperature (RT) activation properties.
钛铁(TiFe)合金是一种室温储氢材料,它通过两步过程吸收氢气,先形成TiFeH,然后形成TiFeH₂。最近阐明了在TiFe合金中添加V的影响。V替代Ti亚晶格会降低P₂/P₁比值,其中P₁和P₂分别是TiFe/TiFeH和TiFeH/TiFeH₂的平衡平台压力,从而将两步氢化限制在较窄的压力范围内。本研究的重点是优化V含量,以便在目标压力范围内实现最大可用存储容量:吸收时为1 MPa,解吸时为0.1 MPa。仔细分析了在选择性Ti或Fe亚晶格处V替代的影响,合金成分TiFeV在目标压力范围内表现出最佳性能,可用容量约为1.5 wt.%。同时,通过添加Ce解决了TiFe基合金中的另一个问题,即在室温下难以活化的问题。结果表明,在TiFe合金中分散3 wt.%的Ce赋予其易于室温(RT)活化的性能。