• Photonics Research
  • Vol. 8, Issue 1, 17 (2020)
Min Guo1, Lai-Peng Ma2、3, Wencai Ren2, and Tianshu Lai1、*
Author Affiliations
  • 1School of Physics, State Key Laboratory of Optoelectronic Materials and Technologies, Sun Yat-sen University, Guangzhou 510275, China
  • 2Shenyang National Laboratory for Material Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China
  • 3e-mail: lpma@imr.ac.cn
  • show less
    DOI: 10.1364/PRJ.8.000017 Cite this Article Set citation alerts
    Min Guo, Lai-Peng Ma, Wencai Ren, Tianshu Lai. Control of the ultrafast photo-electronic dynamics of a chemical-vapor-deposited-grown graphene by ozone oxidation[J]. Photonics Research, 2020, 8(1): 17 Copy Citation Text show less
    References

    [1] J. M. Dawlaty, S. Shivaraman, M. Chandrashekhar, F. Rana, M. G. Spencer. Measurement of ultrafast carrier dynamics in epitaxial graphene. Appl. Phys. Lett., 92, 042116(2008).

    [2] H. N. Wang, J. H. Strait, P. A. George, S. Shivaraman, V. B. Shields, M. Chandrashekhar, J. Hwang, F. Rana, M. G. Spencer, C. S. Ruiz-Vargas, J. Park. Ultrafast relaxation dynamics of hot optical phonons in graphene. Appl. Phys. Lett., 96, 081917(2010).

    [3] B. A. Ruzicka, L. K. Werake, H. Zhao, S. Wang, K. P. Loh. Femtosecond pump-probe studies of reduced graphene oxide thin films. Appl. Phys. Lett., 96, 173106(2010).

    [4] X. Zhao, Z. B. Liu, W. B. Yan, Y. P. Wu, X. L. Zhang, Y. S. Chen, J. G. Tian. Ultrafast carrier dynamics and saturable absorption of solution-processable few-layered graphene oxide. Appl. Phys. Lett., 98, 121905(2011).

    [5] S. Tani, F. Blanchard, K. Tanaka. Ultrafast carrier dynamics under a high electric field. Phys. Rev. Lett., 109, 166603(2012).

    [6] T. Li, L. Luo, M. Hupalo, J. Zhang, M. C. Tringides, J. Schmalian, J. Wang. Femtosecond population inversion and stimulated emission of dense Dirac fermions in graphene. Phys. Rev. Lett., 108, 167401(2012).

    [7] H. Choi, F. Borondics, D. A. Siegel, S. Y. Zhou, M. C. Martin, A. Lanzara, R. A. Kaindl. Broadband electromagnetic response and ultrafast dynamics of few-layer epitaxial graphene. Appl. Phys. Lett., 94, 172102(2009).

    [8] P. A. George, J. Strait, J. Dawlaty, S. Shivaraman, M. Chandrashekhar, F. Rana, M. G. Spencer. Ultrafast optical-pump THz-probe spectroscopy of the carrier relaxation and recombination dynamics in epitaxial graphene. Nano Lett., 8, 4248-4251(2008).

    [9] L. B. Huang, G. V. Hartland, L.-Q. Chu, , R. M. Feenstra, C. X. Lian, K. Tahy, H. Xing. Ultrafast transient absorption microscopy studies of carrier dynamics in epitaxial graphene. Nano Lett., 10, 1308-1313(2010).

    [10] L. B. Huang, B. Gao, G. Hartland, M. Kelly, H. L. Xing. Ultrafast relaxation of hot optical phonons in monolayer and multilayer graphene on different substrates. Sur. Sci., 605, 1657-1661(2011).

    [11] R. W. Newson, J. Dean, B. Schmidt, H. M. van Driel. Ultrafast carrier kinetics in exfoliated graphene and thin graphite films. Opt. Express, 17, 2326-2333(2009).

    [12] B. Gao, G. Hartland, T. Fang, M. Kelly, D. Jena, H. L. Xing, L. B. Huang. Studies of intrinsic hot phonon dynamics in suspended graphene by transient absorption microscopy. Nano Lett., 11, 3184-3189(2011).

    [13] K. M. Dani, J. Lee, R. Sharma, A. D. Mohite, C. M. Galande, P. M. Ajayan, A. M. Dattelbaum, H. Htoon, A. J. Taylor, R. P. Prasankumar. Intraband conductivity response in graphene observed using ultrafast infrared-pump visible-probe spectroscopy. Phys. Rev. B, 86, 125403(2012).

    [14] J. Z. Shang, T. Yu, J. Y. Lin, G. G. Gurzadyan. Ultrafast electron-optical phonon scattering and quasiparticle lifetime in CVD-grown graphene. ACS Nano, 5, 3278-3283(2011).

    [15] J. Z. Shang, Z. Q. Luo, C. X. Cong, J. Y. Lin, T. Yu, G. G. Gurzadyan. Femtosecond UV-pump/visible-probe measurements of carrier dynamics in stacked graphene films. Appl. Phys. Lett., 97, 163103(2010).

    [16] M. Breusing, S. Kuehn, T. Winzer, E. Malić, F. Milde, N. Severin, J. P. Rabe, C. Ropers, A. Knorr, T. Elsaesser. Ultrafast nonequilibrium carrier dynamics in a single graphene layer. Phys. Rev. B, 83, 153410(2011).

    [17] D. Sun, Z. K. Wu, C. Divin, X. B. Li, C. Berger, W. A. De Heer, P. N. First, T. B. Norris. Ultrafast relaxation of excited Dirac fermions in epitaxial graphene using optical differential transmission spectroscopy. Phys. Rev. Lett., 101, 157402(2008).

    [18] K. Chen, H. H. Li, L.-P. Ma, W. C. Ren, T.-F. Chung, H.-M. Cheng, Y. P. Chen, T. S. Lai. Diversity of ultrafast hot-carrier-induced dynamics and striking sub-femtosecond hot-carrier scattering times in graphene. Carbon, 72, 402-409(2014).

    [19] K. Chen, M. N. Yogeesh, Y. Huang, S. Q. Zhang, F. He, X. H. Meng, S. Y. Fang, N. Sheehan, T. H. Tao, S. R. Bank, J. H. Lin, D. Akinwande, P. Sutter, T. S. Lai, Y. G. Wang. Non-destructive measurement of photoexcited carrier transport in graphene with ultrafast grating imaging technique. Carbon, 107, 233-239(2016).

    [20] Y. N. Mulyana, M. Uenuma, Y. Ishikawa, Y. H. Uraoka. Reversible oxidation of graphene through ultraviolet/ozone treatment and its nonthermal reduction through ultraviolet irradiation. J. Phys. Chem. C, 118, 27372-27381(2014).

    [21] N. Leconte, J. Moser, P. Ordejón, H. H. Tao, A. Lherbier, A. Bachtold, F. Alsina, C. M. S. Torres, J.-C. Charlier, S. Roche. Damaging graphene with ozone treatment: a chemically tunable metal-insulator transition. ACS Nano, 4, 4033-4038(2010).

    [22] J. T. Yuan, L.-P. Ma, S. F. Pei, J. H. Du, Y. Su, W. C. Ren, H.-M. Cheng. Tuning the electrical and optical properties of graphene by ozone treatment for patterning monolithic transparent electrodes. ACS Nano, 7, 4233-4241(2013).

    [23] A. I. Aria, A. W. Gani, M. Gharib. Effect of dry oxidation on the energy gap and chemical composition of CVD graphene on nickel. Appl. Surf. Sci., 293, 1-11(2014).

    [24] S. Huh, J. Park, Y. S. Kim, K. S. Kim, B. H. Hong, J.-M. Nam. UV/ozone-oxidized large-scale graphene platform with large chemical enhancement in surface-enhanced Raman scattering. ACS Nano, 5, 9799-9806(2011).

    [25] F. Xia, T. Mueller, Y.-M. Lin, A. Valdes-Garcia, P. Avouris. Ultrafast graphene photodetector. Nat. Nanotechnol., 4, 839-843(2009).

    [26] Y. F. Song, H. Zhang, D. Y. Tang, D. Y. Shen. Polarization rotation vector solitons in a graphene mode-locked fiber laser. Opt. Express, 20, 27283-27289(2012).

    [27] Y. F. Song, L. Li, H. Zhang, D. Y. Shen, D. Y. Tang, K. P. Loh. Vector multi-soliton operation and interaction in a graphene mode-locked fiber laser. Opt. Express, 21, 10010-10018(2013).

    [28] L. B. Gao, W. C. Ren, J. P. Zhao, L.-P. Ma, Z. P. Chen, H.-M. Cheng. Efficient growth of high-quality graphene films on Cu foils by ambient pressure chemical vapor deposition. Appl. Phys. Lett., 97, 183109(2010).

    [29] K. Chen, W. F. Wang, J. M. Chen, J. H. Wen, T. S. Lai. A transmission-grating-modulated pump-probe absorption spectroscopy and demonstration of diffusion dynamics of photoexcited carriers in bulk intrinsic GaAs film. Opt. Express, 20, 3580-3585(2012).

    [30] A. Das, S. Pisana, B. Chakraborty, S. Piscanec, S. K. Saha, U. V. Waghmare, K. S. Novoselov, H. R. Krishnamurthy, A. K. Geim, A. C. Ferrari, A. K. Sood. Monitoring dopants by Raman scattering in an electrochemically top-gated graphene transistor. Nat. Nanotechnol., 3, 210-215(2008).

    Min Guo, Lai-Peng Ma, Wencai Ren, Tianshu Lai. Control of the ultrafast photo-electronic dynamics of a chemical-vapor-deposited-grown graphene by ozone oxidation[J]. Photonics Research, 2020, 8(1): 17
    Download Citation