TY - JOUR
T1 - Laser direct synthesis of Co/CoO modified graphene for high-performance microsupercapacitors
AU - Gao, Meng
AU - Dong, Xia
AU - Mei, Xuesong
AU - Wang, Kedian
AU - Wang, Wenjun
AU - Tang, Zhanghan
AU - Duan, Wenqiang
N1 - Publisher Copyright:
© 2023 Elsevier B.V.
PY - 2023/9/1
Y1 - 2023/9/1
N2 - Graphene/CoO nanocomposites have excellent electrochemical performance and are extensively applied to microsupercapacitors (MSCs). Herein, we propose a simple and efficient method for laser direct writing on a graphene oxide/Co(CH3COO)2 precursor to process graphene/Co/CoO nanocomposite interdigital electrodes for MSCs. This work investigates the structural defects, crystal structure, sheet resistance, elemental composition, and bond characteristics of graphene/Co/CoO nanocomposites synthesized at different laser writing speeds. The specific capacitance, power density, and energy density of the prepared MSC based on PVA/H3PO4 electrolyte and graphene/Co/CoO interdigital electrodes reach 420.23 mF cm−2 (48.31 F cm−3), 1.97 mW cm−2 (226.43 mW cm−3), and 58.37 μWh cm−2 (6.71 mWh cm−3), respectively. Moreover, the Coulombic efficiency and capacitance retention rate of the prepared MSC after 10,000 cycles are 97.97% and 86.56%, respectively. The charge storage of the prepared MSC is mainly achieved through diffusion-controlled intercalation reactions. In addition, the prepared MSC shows good mechanical flexibility.
AB - Graphene/CoO nanocomposites have excellent electrochemical performance and are extensively applied to microsupercapacitors (MSCs). Herein, we propose a simple and efficient method for laser direct writing on a graphene oxide/Co(CH3COO)2 precursor to process graphene/Co/CoO nanocomposite interdigital electrodes for MSCs. This work investigates the structural defects, crystal structure, sheet resistance, elemental composition, and bond characteristics of graphene/Co/CoO nanocomposites synthesized at different laser writing speeds. The specific capacitance, power density, and energy density of the prepared MSC based on PVA/H3PO4 electrolyte and graphene/Co/CoO interdigital electrodes reach 420.23 mF cm−2 (48.31 F cm−3), 1.97 mW cm−2 (226.43 mW cm−3), and 58.37 μWh cm−2 (6.71 mWh cm−3), respectively. Moreover, the Coulombic efficiency and capacitance retention rate of the prepared MSC after 10,000 cycles are 97.97% and 86.56%, respectively. The charge storage of the prepared MSC is mainly achieved through diffusion-controlled intercalation reactions. In addition, the prepared MSC shows good mechanical flexibility.
KW - Cobalt oxide
KW - Graphene
KW - Laser direct-writing
KW - Microsupercapacitors
UR - https://www.scopus.com/pages/publications/85164993124
U2 - 10.1016/j.cej.2023.144609
DO - 10.1016/j.cej.2023.144609
M3 - 文章
AN - SCOPUS:85164993124
SN - 1385-8947
VL - 471
JO - Chemical Engineering Journal
JF - Chemical Engineering Journal
M1 - 144609
ER -