人工晶体学报, 2017, 46(1): 94-104.
采用化学气相沉积法以乙醇为碳源在铜箔生长的单层高质量的石墨烯并将其转移到SiO2/Si基底上。然后在通过自组装的方法在石墨烯表面覆盖一层单层的PS微球阵列。采用反应离子刻蚀的方法在一定的刻蚀条件下对其进行刻蚀,随着刻蚀的时间增加,PS微球的会被逐渐刻蚀掉,石墨烯也会在这个过程中随着被刻蚀。将残留的PS微球杂质去掉后,会在 SiO2/Si基底上呈现出排列规整的石墨烯纳米盘阵列。通过场发射扫描电子显微镜( SEM)、拉曼光谱对石墨烯纳米盘及其形成过程进行表征和分析,为后续制备高质量石墨烯纳米带、石墨烯纳米点、石墨烯纳米盘提供参考。
引用:
李浩,
付志兵,
王红斌,
易勇,
黄维,
张继成
反应离子刻蚀制备石墨烯纳米盘阵列.
人工晶体学报,
2017, 46(1): 94-104.
doi:
参考文献:
[1] Mahmood, N.;Zhang, C.;Liu, F.;Zhu, J.;Hou, Y..Hybrid of Co_3Sn_2@Co nanoparticles and nitrogen-doped graphene as a lithium ion battery anode[J].ACS nano,201311(11):10307-10318.
[2] Zhuangjun Fan;Qiankun Zhao;Tianyou Li.Easy synthesis of porous graphene nanosheets and their use in supercapacitors[J].Carbon: An International Journal Sponsored by the American Carbon Society,20124(4):1699-1703.
[3] Dengyu Pan;Jingchun Zhang;Zhen Li;Minghong Wu.Hydrothermal Route for Cutting Graphene Sheets into Blue-Luminescent Graphene Quantum Dots[J].Advanced Materials,20106(6):734-738.
[4] Kang, Jeong Won;Hwang, Zion.Nonlinear Responses of Graphene Nanodisk Pressure Sensor[J].Journal of computational and theoretical nanoscience,20153(3):425-430.
[5] Sukosin Thongrattanasiri;Frank H. L. Koppens;F. Javier Garcia de Abajo.Complete Optical Absorption in Periodically Patterned Graphene[J].Physical review letters,20124(4):47401.1-47401.5.
[6] Xue, Y.;Wu, B.;Jiang, L.;Guo, Y.;Huang, L.;Chen, J.;Tan, J.;Geng, D.;Luo, B.;Hu, W.;Yu, G.;Liu, Y..Low temperature growth of highly nitrogen-doped single crystal graphene arrays by chemical vapor deposition[J].Journal of the American Chemical Society,201227(27):11060-11063.
[7] N'Diaye AT;Bleikamp S;Feibelman PJ;Michely T.Two-dimensional Ir cluster lattice on a graphene moire on Ir(111)[J].Physical review letters,200621(21):5501-1-5501-4-0.
[8] Feibelman PJ.Pinning of graphene to Ir(111) by flat Ir dots[J].Physical review, B. Condensed matter and materials physics,200816(16):165419-1-165419-7-0.
[9] 张辉;傅强;崔义;谭大力;包信和.Ru(0001)表面石墨烯的外延生长及其担载纳米金属催化剂的研究[J].科学通报,2009(13):1860-1865.
[10] Alexander Sinitskii;James M. Tour.Patterning graphene nanoribbons using copper oxide nanowires[J].Applied physics letters,201210(10):103106-1-103106-3.
[11] Kim, S.-S.;Choi, J.-Y.;Kim, K.;Sohn, B.-H..Large area tunable arrays of graphene nanodots fabricated using diblock copolymer micelles[J].Nanotechnology,201212(12):125301-1-125301-7.
[12] Wei Wu;Luis A.Jauregui;Zhihua Su;Zhihong Liu;Jiming Bao;Yong P. Chen;Qingkai Yu.Growth of Single Crystal Graphene Arrays by Locally Controlling Nucleation on Polycrystalline Cu Using Chemical Vapor Deposition[J].Advanced Materials,201142(42):4898-4903.
[13] Reina A;Jia XT;Ho J;Nezich D;Son HB;Bulovic V;Dresselhaus MS;Kong J.Large Area, Few-Layer Graphene Films on Arbitrary Substrates by Chemical Vapor Deposition[J].Nano letters,20091(1):30-35.
[14] Ke Xiao;Huaqiang Wu;Hongming Lv.The study of the effects of cooling conditions on high quality graphene growth by the APCVD method[J].Nanoscale,201312(12):5524-5529.