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论文发表

2024年度论文发表


2024-02-22 10:20  点击:[]

 

[18] Kun Liu, Xingju Zhao, Xiaoyan Ren*, and Shunfang Li*, Sliding catalysis for ON-OFF switching of the hydrogen evolution reaction on two-dimensional van der Waals bilayers, Phys. Rev. Applied 22, 044061 (2024).

 

[17] Yandi Zhu, Weihu Li, Xiaoyan Ren, Lili Zhang, Xingju Zhao*, and Shunfang Li*Catalytic kinetic growth of a half-metallic hexagonal boron nitride-graphene lateral heterostructure using transition metal single-atom catalysts on Rh(111), J. Mater. Chem. A, 12, 30498 (2024).

 

[16] Duan Hao-Yang, Yang Ke-Xin, Cao Yi-Gang*, Friction characteristics of colloidal particle systems with repulsive interactions of different force ranges, Acta Phys. Sin., 73, 156201 (2024).

 

[15] J. Yao and Y. Cao*, Rayleigh–Taylor instability in an arbitrary direction electrostatic field, Physica D: Nonlinear Phenomena 470, 134338 (2024).

 

[14] Haoyong Suo, Manfu Li, Guang Yang, Yuxin Du,1 Xingju Zhao, Xiaoyan Ren*, and Shunfang Li*, Covalent-bond-linked monolayer fullerene network as a spin sponge for spin-triplet O2 activation and CO oxidation, Phys. Rev. B 110, 125405 (2024).

 

[13] Jie Yang#, Baochun Wu#, Sichun Zhao, Shiqi Liu*, Jing Lu*, Shunfang Li, and Jinbo Yang*, Multistate magnetic tunnel junction based on a single two-dimensional van der Waals antiferromagnet, Phys. Rev. Applied 22, 014017 (2024).

 

[12] Jinlei Shi, Fengyuan Yang, Xingju Zhao, Xiaoyan Ren, Yanan Tang*, and Shunfang Li*, Spin-polarized p-block antimony/bismuth single-atom catalysts on defect-free rutile TiO2(110) substrate for highly efficient CO oxidation, Phys. Chem. Chem. Phys. 26, 16459 (2024).

 

[11] Yuyuan Huang, Shunfang Li*, Zhenyu Zhang, and Ping Cui*, Synergistic role of p-d hybridization and magnetism in enhanced water splitting on ferromagnetic 1T transition metal dichalcogenides, Phys. Rev. B 109, 195414 (2024).

 

[10] Y. Yu, J. Shi, M. Li, L. Li, J. Hu, S. Li, and J.-N. Zhang, Local magnetic effect-induced electron configuration regulation: Spin flipping of iron centers for molecular catalysis, ACS Catalysis, DOI: 10.1021/acscatal.4c00285 (2024).

 

[9] F. Jiao, C. Lin, L. Dong, X. Mao, Y. Wu, F. Dong, Z. Zhang, J. Sun, S. Li, X. Yang, K. Liu, L. Wang, and C.-X. Shan, Silicon vacancies Diamond/Silk/PVA hierarchical physical unclonable functions for multi-level encryption, Adv. Sci., DOI: 10.1002/advs.202308337 (2024).

 

[8] Y. Ku, K. Xu, L. Yan, K. Zhang, D. Song, X. Li, S. Li, S. Cheng, and C. Shan, Revealing the atomic mechanism of diamond-iron interfacial reaction, Carbon Energy 6, e440 (2024).

 

[7] X. Li, L. Wan, C. Lin, W.-T. Huang, J. Zhou, J. Zhu, X. Yang, X. Yang, Z. Zhang, Y. Zhu, X. Ren, Z. Jin, L. Dong, S. Cheng, S. Li, and C. Shan, Interface modulation for the heterointegration of diamond on Si, Adv. Sci., DOI: 10.1002/advs.202309126 (2024).

 

[6] K. X. Yang, M. Zahid, and Y. G. Cao, Dynamics of driven janus particles with pure repulsive interactions over obstacle arrays in active bath, Indian J. Phys., DOI: 10.1007/s12648-024-03117-3 (2024).

 

[5] Xigui Yang, Jinhao Zang, Xingju Zhao, Xiaoyan Ren, Shuailing Ma, Zhuangfei Zhang, Yuewen Zhang, Xing Li, Shaobo Cheng, Shunfang Li, Bingbing Liu, and Chongxin Shan, Centimeter-sized diamond composites with high electrical conductivity and hardness, Proc. Nat. Acad. Sci. 121, e2316580121 (2024).

 

[4] Lili Zhang, Qiuyu Wang, Leyao Wang, Liyuan Wang, Jin Zhao, and Shunfang Li, Ultrafast charge transfer in anisotropic black phosphorus/TiS3 heterostructures for photoconversion, Phys. Rev. B 109, 075306 (2024).

 

[3] Dongwen Yang, Fei Wang, Sen Li, Zhifeng Shi, and Shunfang Li, Improving optoelectronic properties of ternary silver chlorides via defect engineering, J. Phys. Chem. C 128, 2223 (2024).

 

[2] H. C. Wu, H. S. Xu, L. C. Xie, and L. Jin, Edge state, band topology, and time boundary effect in the fine-grained categorization of chern insulators, Phys. Rev. Lett. 132, 083801 (2024).

 

[1] Qian Wang, Kun Liu, Xinlian Xue, Lili Zhang, Rui Pang, Xiaoyan Ren, Xingju Zhao, and Shunfang Li, Negative differential friction predicted in two-dimensional electride commensu- rate contacts: Role of the electronic structure, Phys. Rev. B 109, 085420 (2024).

 


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