Wang Yingjian, Li Siqi, Wang Xiaohan, Wang Shengyi, Liu Yanqing, Zhang Yong, Liu Yang, Jia Hongsheng, Wu Xiaoxin, Zhang Junkai
Key Laboratory of Functional Materials Physics and Chemistry of the Ministry of Education, Jilin Normal University, Siping 136000, China.
Inorg Chem. 2024 Oct 28;63(43):20689-20696. doi: 10.1021/acs.inorgchem.4c03305. Epub 2024 Oct 17.
The high-pressure study on zirconium disulfide (ZrS) has been conducted up to ∼33.9 GPa by using synchrotron X-ray diffraction at room temperature and electrical transport measurements, aiming to investigate the pressure-induced structural phase transitions and the metallization of the material. The experiments indicated that a progressive structural evolution occurs as the sequence below: hexagonal (space group (SG): 3̅) → monoclinic (SG: ) started at 2.8 GPa → orthorhombic (SG: ) started at 9.9 GPa → tetragonal (SG: ) started at 30.4 GPa. The lattice parameters and bulk modulus of the phases at high pressure are calculated. The decompression results demonstrate the coexistence of ZrS stability in monoclinic (SG: ) and orthorhombic (SG: ) structures. The electrical transport results demonstrate a significant enhancement in the conductivity of ZrS at 8 GPa, and metallization occurs at ∼29.8 GPa. Combined with XRD results, the metallization is coincident with the phase transition to the tetragonal (SG: ) structure. Our study presents a more precise phase transition sequence, calculates the cell parameters and bulk modulus of ZrS under high-pressure conditions based on experimental results, and confirms that metallization is induced by the structural phase transition. These findings provide an experimental basis for the further utilization of transition metal sulfides (TMDs) under high pressure.
通过在室温下使用同步加速器X射线衍射和电输运测量,对二硫化锆(ZrS)进行了高达约33.9 GPa的高压研究,旨在研究压力诱导的结构相变和材料的金属化。实验表明,结构按以下顺序逐步演变:六方相(空间群(SG):3̅)→单斜相(SG: ),始于2.8 GPa→正交相(SG: ),始于9.9 GPa→四方相(SG: ),始于30.4 GPa。计算了高压下各相的晶格参数和体模量。解压结果表明,ZrS在单斜相(SG: )和正交相(SG: )结构中稳定共存。电输运结果表明,ZrS在8 GPa时电导率显著增强,在约29.8 GPa时发生金属化。结合XRD结果,金属化与向四方相(SG: )结构的相变一致。我们的研究给出了更精确的相变序列,基于实验结果计算了高压条件下ZrS的晶胞参数和体模量,并证实金属化是由结构相变诱导的。这些发现为过渡金属硫化物(TMDs)在高压下的进一步利用提供了实验依据。