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用于目标压力范围和易于活化的V取代TiFe基合金的设计

Design of V-Substituted TiFe-Based Alloy for Target Pressure Range and Easy Activation.

作者信息

Faisal Mohammad, Kim June-Hyung, Cho Young Whan, Jang Jae-Il, Suh Jin-Yoo, Shim Jae-Hyeok, Lee Young-Su

机构信息

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.

出版信息

Materials (Basel). 2021 Aug 25;14(17):4829. doi: 10.3390/ma14174829.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8722/8432660/0f880147c58c/materials-14-04829-g001.jpg

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