Akiyama Tatsuya, Ukai Marina, Ishii Yosuke, Kawasaki Shinji, Hattori Yoshiyuki
Department of Life Science and Applied Chemistry, Nagoya Institute of Technology, Gokiso-cho, Showa-ku, Nagoya 466-8555, Japan.
F.C.C. Co., Ltd, 7000-36 Nakagawa, Hosoe, Kita, Hamamatsu, Shizuoka 431-1394, Japan.
Phys Chem Chem Phys. 2024 Apr 24;26(16):12738-12744. doi: 10.1039/d4cp00450g.
Recently, hydrogen boride (HB) with a pseudo-two-dimensional sheet structure was successfully synthesized, and it is theoretically predicted to have high potential as a negative electrode material for alkali metal ion batteries, making it a promising new candidate. This study represents the first experimental examination of the negative electrode properties of HB. HB was synthesized cation exchange from MgB. The confirmation of HB synthesis was achieved through various spectroscopic experiments, including synchrotron radiation X-ray diffraction and X-ray photoelectron spectroscopy, in addition to direct observation using transmission electron microscopy. The HB electrode was prepared by mixing the HB powder sample with conductive additive carbon black and a polymer binder. A test cell was assembled with the HB electrode as the working electrode, and lithium metal as the counter and reference electrodes, and its battery electrode properties were evaluated. Although reversible charge-discharge curves with good reversibility were observed, the reversible capacity was 100 ± 20 mA h g which is significantly smaller than the theoretical predictions. Nitrogen gas adsorption experiments were performed on the HB powder sample to determine the specific surface area indicating that the HB sheets were stacked together. It is plausible to consider that this stacking structure led to a reduced lithium-ion storage capacity compared to the theoretical predictions.
最近,成功合成了具有准二维片状结构的硼氢化氢(HB),理论预测其作为碱金属离子电池的负极材料具有很高的潜力,使其成为一种有前景的新候选材料。本研究是对HB负极性能的首次实验研究。HB是通过从MgB进行阳离子交换合成的。除了使用透射电子显微镜直接观察外,还通过各种光谱实验,包括同步辐射X射线衍射和X射线光电子能谱,实现了对HB合成的确认。通过将HB粉末样品与导电添加剂炭黑和聚合物粘合剂混合来制备HB电极。以HB电极为工作电极,锂金属为对电极和参比电极组装测试电池,并对其电池电极性能进行评估。虽然观察到具有良好可逆性的可逆充放电曲线,但可逆容量为100±20 mA h g,明显小于理论预测值。对HB粉末样品进行了氮气吸附实验以确定比表面积,结果表明HB片层堆叠在一起。可以认为这种堆叠结构导致锂离子存储容量比理论预测值降低。