Zhong Group

Nanoelectronics and Nanophotonics Lab

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PEER REVIEWED JOURNALS

  • Kyunghoon Lee, Seunghyun Lee, Yun Suk Eo, Cagliyan Kurdak, and Zhaohui Zhong, "Evidence of electronic cloaking from chiral electron transport in bilayer graphene nanostructures" Physical Review B , 94(20): 205418 (2016).
    (PDF format) (Supporting Material)
  • Girish Kulkarni, Wenzhe Zang, and Zhaohui Zhong, "Nanoelectronic Heterodyne Sensor: A New Electronic Sensing Paradigm" Accounts of Chemical Research , 49 (11), pp 2578–2586 (2016).
    (PDF format)
  • Momchil T. Mihnev, Faris Kadi, Charles J. Divin, Torben Winzer, Seunghyun Lee, Che-Hung Liu, Zhaohui Zhong, Claire Berger, Walt A. de Heer, Ermin Malic, Andreas Knorr and Theodore B. Norris, "Microscopic origins of the terahertz carrier relaxation and cooling dynamics in graphene" Nature Communications 7, 11617 (2016).
    (PDF format)
  • Kyunghoon Lee, Girish Kulkarni and Zhaohui Zhong, "Coulomb blockade in monolayer MoS2 single electron transistor" Nanoscale 8, 7755-7760 (2016).
    (PDF format)
  • You-Chia Chang, Che-Hung Liu, Chang-Hua Liu, Siyuan Zhang, Seth R. Marder, Evgenii E. Narimanov, Zhaohui Zhong and Theodore B. Norris, "Realization of mid-infrared graphene hyperbolic metamaterials" Nature Communications 7, 10568 (2016).
    (PDF format) (Supporting Material)
  • Che-Hung Liu, Qi Chen, Chang-Hua Liu and Zhaohui Zhong, "Graphene Ambipolar Nanoelectronics for High Noise Rejection Amplification" Nano Letters 16(2), 1064-1068 (2016).
    (PDF format) (Supporting Material)
  • Girish S. Kulkarni, Karthik Reddy, Wenzhe Zang, Kyunghoon Lee, Xudong Fan and Zhaohui Zhong, "Electrical Probing and Tuning of Molecular Physisorption on Graphene" Nano Letters 16, 695-700 (2016).
    (PDF format) (Supporting Material)
  • Chang-Hua Liu, You-Chia Chang, Seunghyun Lee, Yaozhong Zhang, Yafei Zhang, Theodore B. Norris and Zhaohui Zhong, "Ultrafast Lateral Photo-Dember Effect in Graphene Induced by Nonequilibrium Hot Carrier Dynamics" Nano Letters 15(6), 4234-4239 (2015).
    (PDF format) (Supporting Material)
  • Seunghyun Lee and Zhaohui Zhong, "Nanoelectronic circuits based on two-dimensional atomic layer crystals" Nanoscale 6 (22), 13283-13300 (2014).
    (PDF format)
  • Girish S. Kulkarni, Karthik Reddy, Zhaohui Zhong and Xudong Fan, "Graphene nanoelectronic heterodyne sensor for rapid and sensitive vapour detection" Nature Communications 5, 4376 (2014).
    (PDF format) (Supporting Material)
  • You-Chia Chang, Chang-Hua Liu, Che-Hung Liu, Zhaohui Zhong and Theodore B. Norris, "Extracting the complex optical conductivity of mono- and bilayer graphene by ellipsometry" Applied Physics Letters 104, 261904 (2014).
    (PDF format)
  • D. M. N. M. Dissanayake and Zhaohui Zhong, "Schottky diodes using as-grown single-walled carbon nanotube ensembles" Applied Physics Letters 104, 123501 (2014).
    (PDF format)
  • Yuchao Yang, Jihang Lee, Seunghyun Lee, Che-Hung Liu, Zhaohui Zhong and Wei Lu, "Oxide Resistive Memory with Functionalized Graphene as Built-in Selector Element" Advanced Materials 26, 3693-3699 (2014).
    (PDF format)
  • Chang-Hua Liu, You-Chia Chang, Theodore B. Norris and Zhaohui Zhong, "Graphene photodetectors with ultra-broadband and high responsivity at room temperature" Nature Nanotechnology 9, 273-278 (2014).
    (PDF format) (Supporting Material)
  • Weixia Zhang, Sudarat Lee, Kelly L. McNear, Ting Fung Chung, Seunghyun Lee, Kyunghoon Lee, Scott A. Crist, Timothy L. Ratliff, Zhaohui Zhong, Yong P. Chen and Chen Yang, "Use of graphene as protection film in biological environments" Scientific Reports 4, 4097 (2014).
    (PDF format)
  • Zhaohui Zhong, "Nanofabrication: Pristine quantum devices on demand" Nature Nanotechnology 8, 543-544 (2013).
    (PDF format)
  • Girish S. Kulkarni and Zhaohui Zhong, "Fabrication of Carbon Nanotube High-Frequency Nanoelectronic Biosenser for Sensing in High Ionic Strengrh Solution" The Journal of Visualized Experiments 77, e50438 (2013).
    (PDF format) (Video)
  • L. David, R. Bhandavat, G. Kulkarni, S. Pahwa, Z. Zhong and G. Singh, "Synthesis of Graphene Films by Rapid Heating and Quenching at Ambient Pressures and Their Electrochemical Characterization" Applied Materials & Interfaces 5, 546 (2013).
    (PDF format) (Supporting Material)
  • Seunghyun Lee, Kyunghoon Lee, Chang-Hua Liu, Girish S. Kulkarni and Zhaohui Zhong, "Flexible and transparent all-graphene circuits for quaternary digital modulations" Nature Communications 3, 1018 (2012).
    (PDF format) (Supporting Material)
  • Chang-Hua Liu, Nanditha Dissanayake, Seunghyun Lee, Kyunghoon Lee and Zhaohui Zhong, "Evidence for Extraction of Photoexcited Hot Carriers from Graphene" ACS Nano 6, 7172 (2012).
    (PDF format) (Supporting Material)
  • Yanjie Su, Hao Wei, Rungang Gao, Zhi Yang, Jing Zhang, Zhaohui Zhong and Yafei Zhang, "Exceptional negative thermal expansion and viscoelastic properties of graphene oxide paper" Carbon 50, 2804 (2012).
    (PDF format)
  • Nathaniel M. Gabor, Zhaohui Zhong, Ken Bosnick and Paul L. McEuen, "Ultrafast Photocurrent Measurement of the Escape Time of Electrons and Holes from Carbon Nanotube p-i-n Photodiodes" Physical Review Letters 108, 087404 (2012).
    (PDF format)
  • Girish S. Kulkarni and Zhaohui Zhong, "Detection beyond the Debye Screening Length in a High-Frequency Nanoelectronic Biosensor" Nano Letters 12, 719 (2012).
    (PDF format) (Supporting Material)
  • Seunghyun Lee, Kyunghoon Lee, Chang-Hua Liu and Zhaohui Zhong, "Homogeneous bilayer graphene film based flexible transparent conductor" Nanoscale 4, 639 (2012).
    (PDF format)
  • Chung-Chaing Wu and Zhaohui Zhong, "Parametric amplification in single-walled carbon nanotube nanoelectromechanical resonators" Applied Physics Letters 99, 083110 (2011).
    (PDF format)
  • Chung-Chaing Wu and Zhaohui Zhong, "Capacitive Spring Softening in Single-Walled Carbon Nanotube Nanoelectromechanical Resonators" Nano Letters 11, 1448 (2011).
    (PDF format) (Supporting Material)
     
  • Chang-Hua Liu, Chung-Chaing Wu and Zhaohui Zhong, "A Fully Tunable Single-Walled Carbon Nanotube Diode" Nano Letters 11, 1782 (2011).
    (PDF format) (Supporting Material)
     
  • Yookyung Jung, Mikhail N. Slipchenko, Chang-Hua Liu, Alexander E. Ribbe, Zhaohui Zhong, Cheng Yang and Ji-Xin Cheng, "Fast Detection of the Metallic State of Individual Single-Walled Carbon Nanotubes Using a Transient-Absorption Optical Microscope" Physical Review Letters 105, 217401 (2010).
    (PDF format)
     
  • Nanditha Dissanayake and Zhaohui Zhong, "Unexpected Hole Transfer Leads to High Efficiency Single-Walled Carbon Nanotube Hybrid Photovoltaic" Nano Letters 11, 286 (2011).
    (PDF format) (Supporting Material)
     
  • Seunghyun Lee, Kyunghoon Lee and Zhaohui Zhong, "Wafer Scale Homogeneous Bilayer Graphene Films by Chemical Vapor Deposition" Nano Letters 10, 4702 (2010).
    (PDF format) (Supporting Material)
     
  • Chung Chiang Wu, Chang-Hua Liu and Zhaohui Zhong, "One-Step Direct Transfer of Pristine Single-Walled Carbon Nanotubes for Functional Electronics" Nano Letters 10, 1032 (2010).
    (PDF format)
     
  • N. M. Garbor, Z. Zhong, K. Bosnick, J. Park and P. L. McEuen, "Extremely Efficient Multiple Electron-Hole Pair Generation in Carbon Nanotube Photodiodes" Science 325, 1367 (2009).
    (PDF format)
     
  • Z. Zhong, N. M. Gabor, J. E. Sharping, A. L. Gaeta, and P. L. McEuen, "Terahertz Time-Domain Detection of Ballistic Electron Resonance in a Single-walled Carbon Nanotube" Nature Nanotechnology 3, 201 (2008).
    (PDF format)
     
  • C. Yang, Z. Zhong, and C. M. Lieber, "Encoding Electronic Properties by Synthesis of Axial Modulation-Doped Silicon Nanowires" Science 310, 1304 (2005).
    (PDF format)
  • Z. Zhong, Y. Fang, W. Lu, and C. M. Lieber, "Coherent Single Charge Transport in Molecular-Scale Silicon Nanowire Transistors" Nano Letters 5, 1143 (2005).
    (PDF format)
  • D. Wang, F. Qian, C. Yang, Z. Zhong, and C. M. Lieber, "Rational Growth of Branched and Hyperbranched Nanowire Structures" Nano Letters 4, 871 (2004).
    (PDF format)
  • M. M. Ziegler, C. A. Picconatto, J. C. Ellenbogen, A. Dehon, D. Wang, Z. Zhong, and C. M. Lieber, "Scalability Simulations for Nanomemory Systems Integrated on the Molecular Scale" Annals of the New York Academy of Sciences 1006, 312 (2003).
    (PDF format)
  • Z. Zhong, D. Wang, Y. Cui, M. W. Bockrath, and C. M. Lieber, "Nanowire Crossbar Arrays as Address Decoders for Integrated Nanosystems" Science 302, 1377 (2003).
    (PDF format)
  •  Z. Zhong, F. Qian, D. Wang, and C. M. Lieber, "Synthesis of p-type Gallium Nitride Nanowires for Electronic and Photonic Nanodevices" Nano Letters 3, 343 (2003).
    (PDF format)
  • Y. Cui, Z. Zhong, D. Wang, W. Wang and C. M. Lieber, "High Performance Silicon Nanowire Field Effect Transistors" Nano Letters 3, 149 (2003).
    (PDF format)
  • Z. Zhong, W. Ding, W. Hou, and Y. Chen, "Preparation, Characterization, and Ferroelectric Properties of the Alkylamine-intercalated Layered Perovskite-type Oxides (CnH2n+1NH3-Sr2Nb3O10, n=1-6)" Chemistry of Materials 13, 538 (2001).
    (PDF format)
  • Z. Zhong, W. Ding, Y. Chen, X. Chen, Y. Zhu, and N. Min, "The Ferroelectricity of Perovskite-type Oxides with Alkylamine Interlayer" Applied Physics Letters 75, 1958 (1999).
    (PDF format)

BOOK CHAPTER

  • Z. Zhong, C. Yang, and C. M. Lieber, “Silicon Nanowires and Nanowire Heterostructures”, in Nanosilicon V. Kumar, Ed. (Elsevier, 2007).

 

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