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Chin. Phys. B, 2025, Vol. 34(9): 099902    DOI: 10.1088/1674-1056/adfec0
CORRIGENDUM Prev  

Corrigendum to “High-throughput discovery of kagome materials in transition metal oxide monolayers”

Renhong Wang(王人宏)1,2, Cong Wang(王聪)1,2,†, Ruixuan Li(李睿宣)1,3, Deping Guo(郭的坪)4,1, Jiaqi Dai(戴佳琦)1,2, Canbo Zong(宗灿波)1,2, Weihan Zhang(张伟涵)1,2, and Wei Ji(季威)1,2,‡
1 Beijing Key Laboratory of Optoelectronic Functional Materials & Micro-Nano Devices, School of Physics, Renmin University of China, Beijing 100872, China;
2 Key Laboratory of Quantum State Construction and Manipulation (Ministry of Education), Renmin University of China, Beijing 100872, China;
3 Beijing No. 35 High School, Beijing 100037, China;
4 College of Physics and Electronic Engineering, Sichuan Normal University, Chengdu 610101, China
Abstract  The labels of VU1 and VU2 in Fig. 1(b) of the paper [Chin. Phys. B 34 046801 (2025)] were not correctly placed. The correct figure is provided. This modification does not affect the result presented in the paper.
Keywords:  corrigendum      monolayers      two-dimensional kagome materials      transition metal oxides      high-throughput calculations  
Received:  22 August 2025      Accepted manuscript online:  25 August 2025
PACS:  99.10.-x (Errata and other corrections)  
  68.35.Dv (Composition, segregation; defects and impurities)  
  68.65.-k (Low-dimensional, mesoscopic, nanoscale and other related systems: structure and nonelectronic properties)  
  73.22.-f (Electronic structure of nanoscale materials and related systems)  
  75.70.Ak (Magnetic properties of monolayers and thin films)  
Corresponding Authors:  Cong Wang, Wei Ji     E-mail:  wcphys@ruc.edu.cn;wji@ruc.edu.cn

Cite this article: 

Renhong Wang(王人宏), Cong Wang(王聪), Ruixuan Li(李睿宣), Deping Guo(郭的坪), Jiaqi Dai(戴佳琦), Canbo Zong(宗灿波), Weihan Zhang(张伟涵), and Wei Ji(季威) Corrigendum to “High-throughput discovery of kagome materials in transition metal oxide monolayers” 2025 Chin. Phys. B 34 099902

[1] Wang R H, Wang C, Li R X, Guo D P, Dai J Q, Zong C B, Zhang W H and Ji W 2025 Chin. Phys. B 34 046801
[2] Zhang Z Q, Dai J Q, Wang C, Zhu H, Pang F, Cheng Z H and Ji W 2025 Adv. Funct. Mater. 35 2416508
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