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室温下石墨烯的霍尔效应实验研究 被引量:3

Experimental Research on Hall Effect of Graphene at Room-temperature
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摘要 对用化学气相沉积法(CVD)研制的长、宽均为1.23 cm,厚度为3个原子层尺寸的石墨烯样品,进行了室温下的霍尔效应相关研究。实验中电极与石墨烯之间有良好的欧姆接触。通过范德堡法测量了样品在磁场强度为0.353 T,不同电流强度下的霍尔电压,并对结果进行处理分析,得到石墨烯的霍尔系数RH=7.00×10-7m3/C、载流子浓度n=10.52×1024/m3、霍尔元件乘积灵敏度KH=6.87×102m2/C。 The grapheme samples were deposited on glass substrates by chemical vapor deposition(CVD).Both the length and width of graphene samples were 1.23 cm,and the thickness was 3 atomic layer thickness setting scales.The Hall effects at room temperature of the samples were studied.There was good ohmic contact between the sample and the electrode.By using van der Pauw method,the Hall voltage of the samples were measured under the magnetic field strength 0.353 T and different electric currents.The calculating results show that the graphene Hall coefficient RH is 7.00×10-7 m3/C,the carrier concentration n is 10.52×1024/m3 and the Hall element production sensitivity KH is 6.87×102 m2/C.
出处 《发光学报》 EI CAS CSCD 北大核心 2013年第1期45-48,共4页 Chinese Journal of Luminescence
基金 国家自然科学基金(10974152,611770959,61275105) 陕西省教育厅科研计划(08JZ68,2010JS111,12JK0519)资助项目
关键词 石墨烯 测量 霍尔效应 graphene measurement Hall effect
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参考文献14

  • 1Katsnelson M I. Graphene carbon in two dimensions[J].Materials Today,2007,(01):20-27.
  • 2Semennoff G W. Condensed-matter simulation of a three-dimensional anomaly[J].Physical Review Letters,1984,(26):2449-2452.
  • 3Chen J H,Jang C,Xiao S. Intrinsic and extrinsic performance limits of graphene devices on SiO2[J].Nature Nanotechnology,2008,(04):206-208.
  • 4Mu Z Q;Zhu Z;Yang J Y.Development present situation of grapheme[J]四川大学学报,2012(02):423-428.
  • 5Novoselov K S,Jiang Z,Zhang Y. Room-temperature quantum hall effect in grapheme[J].Science,2007,(5817):1379-1381.
  • 6Geim A K,Novoselov K S. The rise of grapheme[J].Nature Materials,2007,(03):183-185.
  • 7Novoselov K S,Geim A K,Morozov S V. Two-dimensional gas of massless dirac fermions in grapheme[J].Nature,2005,(7065):197-200.
  • 8Zhang Y B,Tan Y W,Stormer H L. Experimental observation of the quantum Hall effect and Berry's phase in graphene[J].Nature,2005,(7065):201-204.
  • 9Wu S C;Wang Z Q.Modern Physics Experiment[M]北京:北京大学出版社,1986534-536547-559.
  • 10Huang K;Han R Q.Semiconductor Physics[M]北京:科学出版社,197971-75.

同被引文献41

  • 1党智敏,王海燕,彭勃,雷清泉.高介电常数的聚合物基纳米复合电介质材料[J].中国电机工程学报,2006,26(15):100-104. 被引量:53
  • 2NOVOSELOV K S, FAL'KO V I, COLOMBO L, et al. A roadmap for grapheneFJ~. Nature, 2012, 490= 192-200.
  • 3PARK S, RUOFF R S. Chemical methods for the production of graphenesFJ]. Nature Nanotechnology, 2009,4 (4) : 217-224.
  • 4SUBRAHMANYAM K S, PANCHAKARLA L S, GOVINDARAJ A, et al. Simple method of preparing graphene flakes by an arc-discharge methodEJ]. The Journal of Physical Chemistry~C,2009,113(11) ~4257-4259.
  • 5SCHNIEPP H C, LI J L, MCALLISTER M J, et al. Functionalized single graphene sheets derived from splitting graphite oxideFJ]. The Journal of Physical Chemistry: B, 2006, 110(17) :8535-8539.
  • 6SI Y C, SAMULSKI E T. Synthesis of water soluble graphene [J]. Nano Letters,2008,8(6)=1679 1682.
  • 7LIU N, LUO F, WU H X, et al. One-step ionic-liquid- assisted electrochemical synthesis of ionic-liquid functionalized graphene sheets directly from graphite[J]. Advanced Functional Materials,2008,18(10) : 1518-1525.
  • 8RAS(YOL H I, SONG E B, ALLEN M J, etal. Continuity of graphene on polycrystalline copper~JJ. Nano Letters, 2010,11 ( 1 ) .. 251-256.
  • 9LI X S, CAI W W, AN J H, etal. Large-area synthesis of high-quality and uniform graphene films on copper foils[J]. Science, 2009,324 : 1312-1314.
  • 10RASOOL H I, SK)NG E B, MECKLENBURG M, et al. Atomic-scale characterization of graphene grown on copper (100) single crystals[J]. Journal of the American Chemical Society, 2011,133(32) : 12536-12543.

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