Kumar Kapil, Kumar Karn Navneet, Kumar Yogesh, Awana V P S
CSIR-National Physical Laboratory, Dr. K. S. Krishnan Marg, New Delhi 110012, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.
ACS Omega. 2023 Oct 25;8(44):41737-41743. doi: 10.1021/acsomega.3c06096. eCollection 2023 Nov 7.
The report of the synthesis of modified lead apatite (LK-99), with evidence of superconductivity at more than boiling water temperature, has steered the scientific community. There have been several failures to reproduce superconductivity in LK-99, despite partial successes. Here, we have continued our efforts to synthesize phase-pure LK-99 with improved precursors. The synthesis process being followed is the same as suggested by Sukbae Lee et al. The phase purity of each precursor is evidenced by powder X-ray diffraction (PXRD) and is well-fitted by Rietveld refinement. The PXRD confirms the synthesis of phase-pure polycrystalline LK-99 with a lead apatite structure. The sample is highly resistive, showing insulator-like behavior in resistivity measurement in the temperature range from 215 to 325 K, which confirms the absence of superconductivity in synthesized LK-99 at room temperature. The magnetization measurements of LK-99 on the SQUID magnetometer resemble the behavior of a resistive diamagnetic material at 280 K. Moreover, we have also performed first principle calculations to investigate the electronic band structure of LK-99 in the vicinity of the Fermi level. Our study verifies that the copper (Cu)-doped lead apatite (LK-99) exhibits band crossing at the Fermi level, indicating the generation of strong correlation in the presently studied system. Our experimental results do not approve the appearance of superconductivity in LK-99, i.e., PbCuPO.
关于改性铅磷灰石(LK - 99)合成的报告,其在超过沸水温度时具有超导性的证据,引发了科学界的关注。尽管取得了部分成功,但多次尝试在LK - 99中重现超导性均告失败。在此,我们继续努力使用改进的前驱体合成纯相的LK - 99。所遵循的合成过程与Sukbae Lee等人所建议的相同。每种前驱体的相纯度通过粉末X射线衍射(PXRD)得到证实,并通过Rietveld精修拟合良好。PXRD证实合成了具有铅磷灰石结构的纯相多晶LK - 99。该样品具有高电阻,在215至325 K的温度范围内进行电阻率测量时表现出类似绝缘体的行为,这证实了合成的LK - 99在室温下不存在超导性。在超导量子干涉仪磁强计上对LK - 99进行的磁化测量类似于280 K时电阻抗抗磁材料的行为。此外,我们还进行了第一性原理计算,以研究LK - 99在费米能级附近的电子能带结构。我们的研究证实,铜(Cu)掺杂的铅磷灰石(LK - �99)在费米能级处表现出能带交叉,表明在当前研究的体系中产生了强关联。我们的实验结果不支持LK - 99(即PbCuPO)中出现超导性。