Du Mingyang, Song Hao, Zhang Zihan, Duan Defang, Cui Tian
College of Physics, Jilin University, Changchun 130012, China.
Institute of High-Pressure Physics, School of Physical Science and Technology, Ningbo University, Ningbo 315211, China.
Research (Wash D C). 2022 Aug 5;2022:9784309. doi: 10.34133/2022/9784309. eCollection 2022.
Room temperature superconductivity is a dream that mankind has been chasing for a century. In recent years, the synthesis of HS, LaH, and C-S-H compounds under high pressures has gradually made that dream become a reality. But the extreme high pressure required for stabilization of hydrogen-based superconductors limit their applications. So, the next challenge is to achieve room-temperature superconductivity at significantly low pressures, even ambient pressure. In this work, we design a series of high temperature superconductors that can be stable at moderate pressures by incorporating heavy rare earth elements Yb/Lu into sodalite-like clathrate hexahydrides. In particular, the critical temperatures ( ) of YLuH, YLuH, and YLuH can reach 283 K at 120 GPa, 275 K at 140 GPa, and 288 K at 110 GPa, respectively. Their critical temperatures are close to or have reached room temperature, and minimum stable pressures are significantly lower than that of reported room temperature superconductors. Our work provides an effective method for the rational design of low-pressure stabilized hydrogen-based superconductors with room-temperature superconductivity simultaneously and will stimulate further experimental exploration.
室温超导是人类追逐了一个世纪的梦想。近年来,高压下硫化氢、氢化镧和水化硅酸钙化合物的合成逐渐使这个梦想成为现实。但基于氢的超导体稳定所需的极高压力限制了它们的应用。因此,下一个挑战是在显著更低的压力下,甚至在环境压力下实现室温超导。在这项工作中,我们通过将重稀土元素镱/镥掺入类方钠石笼形六氢化物中,设计了一系列能在中等压力下稳定的高温超导体。特别是,YLuH、YLuH和YLuH的临界温度分别在120吉帕时可达283 K、140吉帕时可达275 K以及110吉帕时可达288 K。它们的临界温度接近或已达到室温,且最小稳定压力显著低于已报道的室温超导体。我们的工作为合理设计同时具有室温超导性的低压稳定氢基超导体提供了一种有效方法,并将激发进一步的实验探索。