白珂珂

基本介紹

  • 中文名:白珂珂
  • 學位/學歷:博士
  • 職業:教師
  • 專業方向:利用化學氣象沉積法(CVD)和分子束外延生長方法(MBE)製備低維納米材料
  • 任職院校:河北師範大學物理科學與信息工程學院
人物經歷,研究方向,主要成就,

人物經歷

教育經歷
2007.09-2011.06, 河南大學, 物理學, 學士
2011.09-2016.06, 北京師範大學, 凝聚態物理, 理學博士
工作經歷
2016.07-2018.06, 北京師範大學,化學學院, 博士後
2018.07-, 河北師範大學, 物理科學與信息工程學院, 講師

研究方向

利用化學氣象沉積法(CVD)和分子束外延生長方法(MBE)製備低維納米材料,包括石墨烯、二維拓撲絕緣體等;利用掃描隧道顯微鏡(STM),角分辨光電子能譜儀(ARPES)對低維材料的表面結構和新奇物理性質進項研究。目前已在PRL,PRB等國際核心期刊發表論文10餘篇。

主要成就

科研項目
(1) 中國博士後科學基金特別資助,連續單,雙石墨烯中npn結對狄拉克費米子束縛作用研究,2017.06-2018.06,已結題,主持
(2) 中國博士後科學基金面上項目,銅襯底上石墨烯結構及電學性質的研究,2016.08-2018.06,已結題,主持
論文論著
[1] K.-K. Bai,J. -J Zhou, Y. -C. Wei, J. -B. Qiao, Y. -W. Liu, H. -W. Liu, H. Jiang, L. He,Generating atomically-sharp p-n junctions in graphene and testing quantumelectron-optics in nanoscale
[2] K. -K. Bai, J. -B. Qiao,H. Jiang, H. Liu, and L. He, Massless Dirac fermions trapping in a quasi-one-dimensional n-p-n junction of a continuous graphene monolayer
[3]K. -K. Bai, Y. -C. Wei, J. -B.Qiao, S. -Y. Li, L. -J. Yin, W. Yan, J. -C. Nie, and L. He, Detecting giantelectron-hole asymmetry in a graphene monolayer generated by strain andcharged-defect scattering via Landau level spectroscopy
[4] K.-K. Bai, Y. Zhou, H. Zheng, L. Meng, H. Peng, Z. F. Liu, J. -C. Nie, and L.He, Creating One-Dimensional Nanoscale Periodic Ripples in a Continuous MosaicGraphene Monolayer
[5] H. Yan, C. -C. Liu, K.-K. Bai(共同一作), X. Wang, M. Liu, W. Yan, L. Meng, Y. Zhang, Z. F. Liu,R. -F. Dou, J. -C. Nie, Y. Yao, and L. He,Electronic structures of graphene layers on a metal foil: The effect ofatomic-scale defects, Appl
[6] S. -Y. Li, K.-K. Bai, W. J. Zuo, Y. -W.Liu, Z. -Q. Fu, W. -X. Wang, Y. Zhang, L. -J. Yin, J. -B. Qiao, and L. He,"The tunneling spectra of quasi-free-standing graphenemonolayer".
[7] L. -J. Yin, K. -K. Bai, W. -X. Wang, S. -Y. Li, Y. Zhang, and L. He, Landau quantizationof Dirac fermions in graphene and its multilayers. Front.
[8]S. -Y. Li, K. -K. Bai, L. -J. Yin, J. B. Qiao, W. -X. Wang, andL. He, Observation of Valley-polarized Landau Levels in Strained Graphene.
[9] D.-L. Ma, Z. -Q. Fu, X. -L. Sui, K. -K. Bai, J. -B. Qiao, C. Yan, Y. Zhang, J. -Y. Hu, Q. Xiao, X. -R. Mao, W. -H. Duan, and L. He, Modulating theelectronicproperties of Graphene by self-organized sulfur identical nanoclusterand Atomic superlattices Confined at an Interface.
[10] Y. Zhang, X. Sui,D. -L. Ma, K. -K. Bai, W. Duan, and L.He, Spin-Polarized Semiconducting Band Structure of Monolayer Grapheneon Ni(111).
[11] R. Xu, L. -J. Yin, J. B. Qiao, K.-K. Bai, J. -C. Nie, and L. He, Direct probing of the stacking order andelectronic spectrum of rhombohedral trilayer graphene with scanning tunnelingmicroscopy.
[12] Y. Zhang, S. -Y. Li, H.Huang, W. -T. Li, J. -B. Qiao, W. -X. Wang, L. -J. Yin, K. -K. Bai,W. Duan, and L. He, Direct experimental evidence of π magnetism of a singleatomic vacancy in graphene.
[13] L. Meng, W. -Y. He, H.Zheng, M. Liu, H. Yan, W. Yan, Z. -D. Chu, K. –K. Bai, R. -F.Dou, Y. Zhang, Z. Liu, J. -C. Nie, and L. He, Strain-induced one-dimensionalLandau level quantization in corrugated graphene.

相關詞條

熱門詞條

聯絡我們