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Graphene/Bi12TiO20:Li-MoS2/Na2Ti3O7 composite electrodes to enhance the capacitance/energy-density of supercapacitors operated under harsh environments

2025/06/22 by M. Perez-Chavez, Y. Bedolla, Syed Fahad Bin Haque +6 · 1 voice
Materials Science · Engineering · #Supercapacitor Materials and Fabrication #Conducting polymers and applications #Advanced Sensor and Energy Harvesting Materials

paper · doi:10.1016/j.inoche.2025.114927

openalex publication_date 2025/06/22 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/23

Abstract

Li-doped Bi 12 TiO 20 (Bi 12 TiO 20 :Li) and MoS₂/Na₂Ti₃O₇ composites were utilized as redox powders to enhance the capacitance of graphene supercapacitors (SCaps), whose electrodes were made by printing graphene on recycled polyethylene. The SCaps made with graphene-based electrodes as well as the redox powders of Bi₁₂TiO₂₀:Li and MoS₂/Na₂Ti₃O₇ showed specific capacitance/energy-density values ( C t / E d ) of 420.6 F g −1 /84.2 Wh kg −1 and 345.8 F g −1 /69.2 Wh kg −1 , respectively. Two other SCaps were subsequently fabricated with the same graphene-based electrodes containing a mixture of Bi₁₂TiO₂₀:Li/(MoS₂/Na₂Ti₃O₇) redox powders with ratios of 50/50 or 25/75. These devices were tested in air at room temperature, producing specific capacitances/energy-densities of 407.6 F g −1 /81.5 Wh kg −1 and 686.4 F g –1 /137.5 Wh kg −1 , respectively. The best SCap made with a mixture of 25/75 of redox powders was subjected to 1000 charging/discharging cycles, which displayed at the end of the test a capacitance retention of 95.5 %. Furthermore, the supercapacitor made with a mixture of 25/75 of redox powders was electrochemically tested under harsh conditions: The first condition was underwater, in this case, the values of ( C t / E d ) were 976.5 F g −1 /177.2 Wh kg −1 . The second test was carried out in air, at a temperature of 60 °C, and the resulting ( C t / E d ) values were 734.9 F g −1 /146.8 Wh kg −1 . Those values reached at 60 °C surpassed these obtained in air at room temperature. Thus, the specific capacitance increased by 6.6 % due to heating and by 29.7 % when the device is underwater. On the other hand, Raman and XPS analysis revealed that the ion species of Mo 6+ /Mo 5+ , Bi 3+ /Bi 0 , Li 0 /Na 0 , Ti 3+ /Ti 2+ as well as oxygen-vacancy defects (OV x ) were the main redox centers that served to store energy in the supercapacitors.

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