Achimovičová Marcela, Gáborová Katarína, Navrátil Jiří, Levinský Petr, Skurikhina Olha, Kurimský Juraj, Briančin Jaroslav, Plecháček Tomáš, Drenčaková Dáša
Institute of Geotechnics, Slovak Academy of Sciences, Košice, Slovakia.
Institute of Metallurgy, Technical University of Košice, Košice, Slovakia.
Discov Nano. 2024 Apr 30;19(1):73. doi: 10.1186/s11671-024-04025-5.
This work studied the thermal stability, electrical, and thermoelectrical properties of copper(I) selenide, CuSe synthesized by high-energy milling in a planetary ball mill. The phase composition was investigated by X-ray powder diffraction analysis and scanning electron microscopy. The conversion of the precursors during mechanochemical synthesis and the stability of the product was monitored by thermal analysis. The dependence of electrical properties on the product porosity was observed. For the densification of CuSe, the method of spark plasma sintering was applied to prepare suitable samples for thermoelectric characterization. High-temperature thermoelectric properties of synthetic CuSe were compared to its natural analogue-mineral berzelianite in terms of its potential application in energy conversion. Based on the results a relatively high figure-of-merit, ZT parameter (~ 1.15, T = 770 K) was obtained for undoped CuSe, prepared by rapid mechanochemical reaction (5 min). Cyclic voltammetry measurements of Na/NaClO/CuSe cell implied that mechanochemically synthesized CuSe could be used as a promising intercalation electrode for sodium-ion batteries.
本研究通过行星式球磨机高能球磨合成了硒化亚铜(CuSe),并对其热稳定性、电学和热电性能进行了研究。通过X射线粉末衍射分析和扫描电子显微镜研究了相组成。通过热分析监测了机械化学合成过程中前驱体的转化和产物的稳定性。观察到电学性能对产物孔隙率的依赖性。为了使CuSe致密化,采用火花等离子烧结法制备了适合热电表征的样品。就合成CuSe在能量转换中的潜在应用而言,将其高温热电性能与其天然类似物——矿物硒铜银矿进行了比较。基于这些结果,通过快速机械化学反应(5分钟)制备的未掺杂CuSe获得了相对较高的优值ZT参数(~1.15,T = 770 K)。Na/NaClO/CuSe电池的循环伏安法测量表明,机械化学合成的CuSe可作为一种有前景的钠离子电池插层电极。