• 文献标题:   Charge storage mechanisms of manganese oxide nanosheets and N-doped reduced graphene oxide aerogel for high-performance asymmetric supercapacitors
  • 文献类型:   Article
  • 作  者:   IAMPRASERTKUN P, KRITTAYAVATHANANON A, SEUBSAI A, CHANLEK N, KIDKHUNTHOD P, SANGTHONG W, MAENSIRI S, YIMNIRUN R, NILMOUNG S, PANNOPARD P, ITTISANRONNACHAI S, KONGPATPANICH K, LIMTRAKUL J, SAWANGPHRUK M
  • 作者关键词:  
  • 出版物名称:   SCIENTIFIC REPORTS
  • ISSN:   2045-2322
  • 通讯作者地址:   Vidyasirimedhi Inst Sci Technol
  • 被引频次:   40
  • DOI:   10.1038/srep37560
  • 出版年:   2016

▎ 摘  要

Although manganese oxide-and graphene-based supercapacitors have been widely studied, their charge storage mechanisms are not yet fully investigated. In this work, we have studied the charge storage mechanisms of K-birnassite MnO2 nanosheets and N-doped reduced graphene oxide aerogel (N-rGO(ae)) using an in situ X-ray absorption spectroscopy (XAS) and an electrochemical quart crystal microbalance (EQCM). The oxidation number of Mn at the MnO2 electrode is +3.01 at 0 V vs. SCE for the charging process and gets oxidized to +3.12 at +0.8 V vs. SCE and then reduced back to +3.01 at 0 V vs. SCE for the discharging process. The mass change of solvated ions, inserted to the layers of MnO2 during the charging process is 7.4 mu g cm(-2). Whilst, the mass change of the solvated ions at the N-rGO(ae) electrode is 8.4 mu g cm(-2). An asymmetric supercapacitor of MnO2//N-rGO(ae) (CR2016) provides a maximum specific capacitance of ca. 467 F g(-1) at 1 A g(-1), a maximum specific power of 39 kW kg(-1) and a specific energy of 40 Wh kg(-1) with a wide working potential of 1.6 V and 93.2% capacity retention after 7,500 cycles. The MnO2//N-rGO(ae) supercapacitor may be practically used in high power and energy applications.