Pshenay-Severin Dmitry, Guin Satya Narayan, Konstantinov Petr, Novikov Sergey, Rathore Ekashmi, Biswas Kanishka, Burkov Alexander
Ioffe Institute, St Petersburg 194021, Russia.
Jawaharlal Nehru Centre for Advanced Scientific Research, Bengaluru 560064, India.
Materials (Basel). 2023 Jan 28;16(3):1130. doi: 10.3390/ma16031130.
Sulfides and selenides of copper and silver have been intensively studied, particularly as potentially efficient thermoelectrics. Ag3CuS2 (jalpaite) is a related material. However very little is known about its physical properties. It has been found that the compound undergoes several structural phase transitions, having the tetrahedral structural modification I41/amd at room temperature. In this work, its band structure, phonon spectrum and thermoelectric properties were studied theoretically and experimentally. Seebeck coefficient, electrical conductivity and thermal conductivity were measured in a broad temperature range from room temperature to 600 K. These are the first experimental data on transport properties of jalpaite. Ab initio calculations of the band structure and Seebeck coefficient were carried out taking into account energy dependence of the relaxation time typical for the scattering of charge carriers by phonons. The results of the calculations qualitatively agree with the experiment and yield large values of the Seebeck coefficient characteristic for lightly doped semiconductor. The influence of intrinsic defects (vacancies) on the transport properties was studied. It was shown that the formation of silver vacancies is the most probable and leads to an increase of hole concentration. Using the temperature dependent effective potential method, the phonon spectrum and thermal conductivity at room temperature were calculated. The measurements yield low lattice thermal conductivity value of 0.5 W/(m K) at 300 K, which is associated with the complex crystal structure of the material. The calculated room temperature values of the lattice thermal conductivity were also small (0.14-0.2 W/(m K)).
铜和银的硫化物及硒化物已得到深入研究,尤其是作为潜在的高效热电材料。Ag3CuS2(硫铜银矿)就是一种相关材料。然而,人们对其物理性质知之甚少。已发现该化合物会经历几次结构相变,在室温下具有四面体结构变体I41/amd。在这项工作中,对其能带结构、声子谱和热电性质进行了理论和实验研究。在从室温到600 K的宽温度范围内测量了塞贝克系数、电导率和热导率。这些是关于硫铜银矿输运性质的首批实验数据。考虑到声子对电荷载流子散射的典型弛豫时间的能量依赖性,对能带结构和塞贝克系数进行了从头算。计算结果与实验定性相符,并得出了轻掺杂半导体特有的大塞贝克系数值。研究了本征缺陷(空位)对输运性质的影响。结果表明,银空位的形成最有可能,且会导致空穴浓度增加。使用温度依赖有效势方法,计算了室温下的声子谱和热导率。测量结果在300 K时得出低晶格热导率值0.5 W/(m·K),这与该材料的复杂晶体结构有关。计算得到的室温晶格热导率值也很小(0.14 - 0.2 W/(m·K))。