用户名: 密码: 验证码:
Preliminary comparison of different reduction methods of graphene oxide
详细信息    查看全文
  • 作者:YU SHANG (1)
    DONG ZHANG (1)
    YANYUN LIU (1)
    CHAO GUO (1)

    1. School of Materials Science and Engineering
    ; Tongji University ; Shanghai ; 201804 ; PR China
  • 关键词:Chemical reduction ; thermal reduction ; electrochemical reduction ; graphene oxide.
  • 刊名:Bulletin of Materials Science
  • 出版年:2015
  • 出版时间:February 2015
  • 年:2015
  • 卷:38
  • 期:1
  • 页码:7-12
  • 全文大小:945 KB
  • 参考文献:1. Geim, AK, Novoselov, KS (2007) Nat. Mater. 6: pp. 183 CrossRef
    2. Balandin, AA, Ghosh, S, Bao, W, Calizo, I, Teweldebrhan, D, Miao, F (2008) Nano Lett. 8: pp. 902 CrossRef
    3. Lee, CG, Wei, XD, Kysar, JW, Hone, J (2008) Science 321: pp. 385 CrossRef
    4. Orlita, M, Faugeras, C, Plochocka, P (2008) Phys. Rev. Lett. 101: pp. 267601 CrossRef
    5. Service, RF (2009) Science 324: pp. 875 CrossRef
    6. Park, S, Ruoff, RS (2009) Nat. Nanotechnol. 4: pp. 217 CrossRef
    7. Ang, W, Jingxia, W, Qing, L, Xiangmei, L, Xingao, L, Xiaochen, D, Wei, H (2011) Mater. Res. Bull. 46: pp. 2131 CrossRef
    8. Luo, DC, Zhang, GX, Liu, JF, Sun, XM (2011) J. Phys. Chem. C 115: pp. 11327 CrossRef
    9. Pei, SF, Cheng, HM (2012) Carbon 50: pp. 3210 CrossRef
    10. Athanasios, B, Bourlinos, DG, Dimitrios, P, Tamas, S, Anna, S, Imre, D (2003) Langmuir 19: pp. 6050 CrossRef
    11. Becerril, HA, Man, J, Liu, Z, Stoltenberg, RM, Bao, Z, Chen, Y (2008) ACS Nano 2: pp. 463 CrossRef
    12. Shin, HJ, Kim, KK, Benayad, A (2009) Adv. Funct. Mater. 19: pp. 1987 CrossRef
    13. Virendra, S, Daeha, J, Lei, Z (2011) Science 56: pp. 1178
    14. Fernandez-Merino, MJ, Guardia, L, Paredes, JI, Villar-Rodil, S (2010) J. Phys. Chem. C 114: pp. 6426 CrossRef
    15. Stankovich S, Piner R D and Chen X Q 2006a / J. Mater. Chem. 16 155
    16. Stankovich S, Dikin D A and Dommett G H B 2006b / Nature 442 282
    17. Stankovich, S, Dikin, DA, Piner, RD (2007) Carbon 45: pp. 1558 CrossRef
    18. Hernandez, Y, Nicolosi, V, Lotya, M, Blighe, FM, Sun, ZY, De, S, McGovern, IT, Holland, B, Byrne, M, Gunko, Y (2008) Nat. Nanotechnol. 3: pp. 563 CrossRef
    19. Guo, HL, Wang, XF, Qian, QY, Xia, XH (2009) ACS Nano 3: pp. 2653 CrossRef
    20. Shun, M, Haihui, P, Junhong, C (2012) RSC Adv. 2: pp. 2643 CrossRef
    21. Cristina, B, Patricia, L, Clara, B, Ricardo, S, Marcos, G, M Dolores, G, Francisco, RR, Rosa, M (2013) Carbon 52: pp. 476 CrossRef
    22. Schniepp, HC, Li, JL, McAllister, MJ, Sai, H, Herrera-Alonso, M, Adamson, DH, Prud鈥檋omme, RK, Car, R, Saville, DA, Aksay, IA (2006) J. Phys. Chem. B 110: pp. 8535 CrossRef
    23. McAllister, MJ, Li, JL, Adamson, DH (2007) Chem. Mater. 19: pp. 4396 CrossRef
    24. Li X, Wang H, Robinson J T, Sanchez H, Diankov G and author=Li, J L Dai H 2009 / Am. Chem. Soc. 131 15939
    25. Yang, DX, Velamakanni, A, Bozoklu, G, Park, S, Stoller, M, Piner, RD, Stankovich, S, Jung, I, Field, DA, Ventrice, CA, Ruoff, RS (2009) Carbon 47: pp. 145 CrossRef
    26. Acik, M, Lee, G, Mattevi, C, Chhowalla, M (2010) Nat. Mater. 9: pp. 840 CrossRef
    27. Ramesha, GK, Sampath, S (2009) J. Phys. Chem. C 113: pp. 7985 CrossRef
    28. Zhou, M, Wang, Y, Zhai, Y, Zhai, JRenW, Wang, F (2009) Chem. Eur. J. 15: pp. 6116 CrossRef
    29. An, SJ, Zhu, Y, Lee, SH, Stoller, MD, Emilsson, T, Park, S, Velamakanni, A, Ruoff, RS (2010) J. Phys. Chem. Lett. 1: pp. 1259 CrossRef
    30. Fan, XB, Peng, WC, Li, Y, Li, XY, Wang, SL, Zhang, GL, Zhang, FB (2008) Adv. Mater. 20: pp. 4490 CrossRef
    31. Hummers, WS, Offeman, RE (1958) J. Am. Chem. Soc. 80: pp. 1339 CrossRef
    32. Park, S, An, J, Jeffrey, RP (2011) Carbon 49: pp. 3019 CrossRef
    33. Cecilia, M, Goki, E, Stefano, A, Steve, M, Andre Mkhoyan, K, Ozgur, C, Daniel, M, Gaetano, G, Eric, G, Chhowalla, M (2009) Adv. Funct. Mater. 19: pp. 2577 CrossRef
    34. Si, YC, Samulski, ET (2008) Nano Lett. 8: pp. 1679 CrossRef
  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Chemistry
    Materials Science
    Engineering, general
  • 出版者:Springer India
  • ISSN:0973-7669
文摘
The reduction of graphene oxide (GO) is a promising route to bulk produce graphene-based sheets. Different reduction processes result in reduced graphene oxide (RGO) with different properties. In this paper three reduction methods, chemical, thermal and electrochemical reduction, were compared on three aspects including morphology and structure, reduction degree and electrical conductivity by means of scanning electron microscopy (SEM), X-ray diffraction(XRD), the Fourier transform infrared spectroscopy (FT-IR) spectrum, X-ray photoelectron spectroscopy (XPS) and four-point probe conductivity measurement. Understanding the different characteristics of different RGO by preliminary comparison is helpful in tailoring the characteristics of graphene materials for diverse applications and developing a simple, green, and efficient method for the mass production of graphene.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700