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By means of density functional theory and constrained random phase approximation we analyze the bandstructure of Pb$_9$Cu(PO$_4$)$_6$O (named LK-99). Our data show that the lead-phosphate apatite LK-99 in the proposed Cu-doped structure is…

Materials Science · Physics 2023-10-03 Lorenzo Celiberti , Lorenzo Varrassi , Cesare Franchini

Recently, Lee et al. reported the experimental discovery of room-temperature ambient-pressure superconductivity in a Cu-doped lead-apatite (LK-99) (arXiv:2307.12008, arXiv:2307.12037). Remarkably, the superconductivity persists up to 400 K…

Materials Science · Physics 2023-08-07 Junwen Lai , Jiangxu Li , Peitao Liu , Yan Sun , Xing-Qiu Chen

The most recent discovery, the Cu-doped lead apatite LK-99, is a proposed room-temperature superconductor operating under ambient pressure. However, this discovery has brought a slew of conflicting results from different scientific groups.…

Superconductivity · Physics 2023-09-18 Jun Li , Qi An

The pursuit of room-temperature ambient-pressure superconductivity in novel materials has sparked interest, with recent reports suggesting such properties in Cu-substituted lead apatite, known as LK-99. However, these claims lack…

Materials Science · Physics 2023-09-01 Songge Yang , Guangchen Liu , Yu Zhong

In a series of recent reports, doped lead apatite (LK-99) has been proposed as a candidate ambient temperature and pressure superconductor. However, from both an experimental and theoretical perspective, these claims are largely…

We briefly review the status quo of research on the putative superconductor Pb$_9$Cu(PO$_4$)$_6$O also known as LK-99. Further, we provide {\em ab initio} derived tight-binding parameters for a two- and five-band model, and solve these in…

Recent reports of a possible room-temperature superconductor called LK-99 have generated a lot of attention worldwide. In just a few days, a large amount of experimental works attempted to reproduce this sample and verify its properties. At…

Superconductivity · Physics 2023-08-29 Hua Bai , Lei Gao , Jianrong Ye , Chunhua Zeng , Wuming Liu

Achieving superconductivity at room temperature could lead to substantial advancements in industry and technology. Recently, a compound known as Cu-doped lead-apatite, Pb10-xCux(PO4)6O (0.9 < x < 1.1), referred to as "LK-99", has been…

The recent report of superconductivity in the Cu-doped PbPO compound stimulates the extensive researches on its physical properties. Herein, the detailed atomic and electronic structures of this compound are investigated, which are the…

Superconductivity · Physics 2023-08-09 Jianfeng Zhang , Huazhen Li , Ming Yan , Miao Gao , Fengjie Ma , Xun-Wang Yan , Z. Y. Xie

Recently, above-room temperature superconductivity was reported in the Cu doped lead apatite Pb$_{10-x}$Cu$_x$(PO4)$_6$O, dubbed LK-99. By relaxing the structure with Cu substitution, we derive a four-band low-energy model with two 3/4…

Strongly Correlated Electrons · Physics 2024-03-08 Changming Yue , Viktor Christiansson , Philipp Werner

A material called LK-99, a modified-lead apatite crystal structure with the composition Pb$_{10-x}$Cu$_x$(PO$_4$)$_6$O ($0.9<x<1.1$) has been reported to be an above-room-temperature superconductor at ambient pressure. It is hard to expect…

Superconductivity · Physics 2024-04-30 P. Abramian , A. Kuzanyan , V. Nikoghosyan , S. Teknowijoyo , A. Gulian

A recent paper [Lee {\em et al.}, J. Korean Cryt. Growth Cryst. Techn. {\bf 33}, 61 (2023)] provides some experimental indications that Pb$_{10-x}$Cu$_x$(PO$_4$)$_6$O with $x\approx 1$, coined LK-99, might be a room-temperature…

Superconductivity · Physics 2023-09-26 Liang Si , Karsten Held

The very recent claim on the discovery of ambient-pressure room-temperature superconductivity in modified lead-apatite has immediately excited sensational attention in the entire society, which is fabricated by sintering lanarkite (Pb2SO5)…

Superconductivity · Physics 2023-09-06 Li Liu , Ziang Meng , Xiaoning Wang , Hongyu Chen , Zhiyuan Duan , Xiaorong Zhou , Han Yan , Peixin Qin , Zhiqi Liu

Room-temperature superconductivity represents a significant scientific milestone, with the initial report of LK-99, a copper-substituted lead apatite $\mathrm{Pb}_{10-x}\mathrm{Cu}_{x}(\mathrm{PO}_{4})_{6}\mathrm{O}$, offering a potential…

Superconductivity · Physics 2024-09-20 Ming-Long Wang , Yin-Hui Peng , Ji-Hai Liao , Xiao-Bao Yang , Yao Yao , Yu-Jun Zhao

The report of synthesis of modified Lead apatite (LK-99) with evidence of superconductivity at more than boiling water temperature has steered the whole scientific community. There have been several failures to reproduce superconductivity…

Superconductivity · Physics 2023-08-10 Kapil Kumar , N. K. Karn , Yogesh Kumar , V. P. S. Awana

Lee et al. reported that the compound LK99, with a chemical formula of Pb$_{10-x}$Cu$_x$(PO$_4$)$_6$O ($0.9<x<1.1$), exhibits room-temperature superconductivity under ambient pressure. In this study, we investigated the transport and…

Superconductivity · Physics 2023-12-12 Shilin Zhu , Wei Wu , Zheng Li , Jianlin Luo

An intuitive chemical perspective on the LK-99 material is outlined and supported by DFT calculations. A hidden flat Lead band that exhibits instability toward charge density wave formation is exposed. Electron transfer between Lead…

Superconductivity · Physics 2023-08-15 Itai Panas

Based on DFT calculations, we present the basic electronic structure of CuPb9(PO4)6O (Cu-doped lead apatite, LK-99), in two scenarios: (1) where the structure is constrained to the P3 symmetry and (2) where no symmetry is imposed. At the…

LK-99, with chemical formula Pb$_{10-x}$Cu$_x$(PO4)$_6$O, was recently reported to be a room-temperature superconductor. While this claim has met with little support in a flurry of ensuing work, a variety of calculations (mostly based on…

Superconductivity · Physics 2023-08-22 Dimitar Pashov , Swagata Acharya , Stephan Lany , Daniel S. Dessau , Mark van Schilfgaarde

The LK-99 hype came and went but the great potential of the apatite class of materials as platform for flat bands research must not be swept away in the process. A heuristic reinterpretation of the atomic structure of LK-99 is offered,…

Materials Science · Physics 2024-10-08 Itai Panas
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