论文标题
范德华化合物$ _3 $中的压力诱导的绝缘体到金属过渡
Pressure-Induced Insulator-to-Metal Transition in van der Waals compound CoPS$_3$
论文作者
论文摘要
我们已经研究了范德华化合物COPS在高压下的绝缘体到金属结构和晶体结构的演变,$ _3 $通过$ \ textIt {intutiT {intutu} $电阻,霍尔电阻,磁场,磁场,X射线衍射和拉曼散射测量值。警察$ _3 $展示了$ c2/m $ $ \ rightarrow $ $ $ $ p \ OVERLINE {3} $在7 GPA时结构转换,伴随着每个配方单元的2.9 $ \%$减少。同时,电阻大大降低,警察$ _3 $变成金属。这个金属警察$ _3 $是具有多个传统带的孔优势导体。金属化的线性磁倍率和小体积塌陷表明金属相的高旋转$ \ rightarrow $低旋转过渡。因此,金属警察$ _3 $可能具有不均匀的磁矩分布和短距离磁有序。该报告总结了$ m $ ps $ _3 $($ M $ = V,MN,FE,CO,NI和CD)的综合阶段图,该阶段图在压力下使金属化。
We have studied the insulator-to-metal transition and crystal structure evolution under high pressure in the van der Waals compound CoPS$_3$ through $\textit{in-situ}$ electrical resistance, Hall resistance, magnetoresistance, X-ray diffraction, and Raman scattering measurements. CoPS$_3$ exhibits a $C2/m$ $\rightarrow$ $P\overline{3}$ structural transformation at 7 GPa accompanied by a 2.9$\%$ reduction in the volume per formula unit. Concomitantly, the electrical resistance decreases significantly, and CoPS$_3$ becomes metallic. This metallic CoPS$_3$ is a hole-dominant conductor with multiple conduction bands. The linear magnetoresistance and the small volume collapse at the metallization suggest the incomplete high-spin $\rightarrow$ low-spin transition in the metallic phase. Thus, the metallic CoPS$_3$ possibly possesses an inhomogeneous magnetic moment distribution and short-range magnetic ordering. This report summarizes the comprehensive phase diagram of $M$PS$_3$ ($M$ = V, Mn, Fe, Co, Ni, and Cd) that metalize under pressures.