Sr 2 Nb 3 O 10 nanosheet thin film grown via LB method for high-performance planar -type pseudocapacitor

  • Lee, Woong-Hee
  • Woo, Jong-Un
  • Hwang, Hyun-Gyu
  • Nahm, Sahn
  • Lee, GeumBee
  • 외 1명
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초록

The electrochemical properties of a two-dimensional metal-oxide Sr2Nb3O10 (SNO) nanosheet thin film were investigated for application to pseudocapacitors. Smooth migration of cations was expected to occur in the SNO thin film because of a large gap between the SNO nanosheets along the [0 0 1] direction. A thin film with 10 SNO nanosheets was well deposited on a Pt/Ti/SiO2/Si substrate using the Langmuir–Blodgett method, and it exhibited a large (0 0 1) interplanar distance of 1.83 nm owing to the presence of TBA+ ions. The TBA+ ions were removed from the SNO thin-film electrode after the second charge/discharge cycle in the LiCl electrolyte with a slight decrease in the (0 0 1) interplanar distance (1.65 nm). The Li+ ions were intercalated and deintercalated during the charge/discharge cycle, resulting in good capacitive behavior. The planar-type SNO pseudocapacitor exhibited rectangular cyclic-voltammetry curves and triangular charge/discharge curves. Moreover, capacity retention was 85% after 5000 cycles, indicating that the pseudocapacitor had ideal capacitive behavior with excellent cycling stability. The developed SNO pseudocapacitor exhibited a higher power density (0.2 W/cm3) and energy density (4.9 × 10-3 W h/cm3) than previously reported thin-film capacitors. Therefore, the SNO thin film is a good candidate material for pseudocapacitors. © 2020 Elsevier B.V.

키워드

Intercalation pseudocapacitorLangmuir–Blodgett methodSr2Nb3O10 nanosheetsSupercapacitorUltrathin filmALL-SOLID-STATEELECTROPHORETIC DEPOSITIONELECTRODE MATERIALMULTILAYER FILMSENERGY-STORAGECHARGE STORAGECARBONSUPERCAPACITORSINTERCALATIONFABRICATION
제목
Sr 2 Nb 3 O 10 nanosheet thin film grown via LB method for high-performance planar -type pseudocapacitor
저자
Lee, Woong-HeeWoo, Jong-UnHwang, Hyun-GyuNahm, SahnLee, GeumBeeChoi, Ji-Won
DOI
10.1016/j.apsusc.2020.146640
발행일
2020-09-30
유형
Article
저널명
Applied Surface Science
525