Enhancement of electrochemical performance of lithium manganese oxide with graphene for aqueous supercapabattery
In this study, we synthesized lithium manganese oxide nanoparticles/graphene nanoplatelets (LMO/GNPs) as the cathode material for a supercapabattery using a hydrothermal method. The addition of GNPs resulted in a 63 and 68 increase in specific capacitance and capacity compared to LMO alone, attribut...
محفوظ في:
المؤلفون الرئيسيون: | , , , , , , |
---|---|
التنسيق: | مقال |
منشور في: |
Elsevier
2023
|
الوصول للمادة أونلاين: | http://psasir.upm.edu.my/id/eprint/107694/ https://linkinghub.elsevier.com/retrieve/pii/S0167577X23010236 |
الوسوم: |
إضافة وسم
لا توجد وسوم, كن أول من يضع وسما على هذه التسجيلة!
|
المؤسسة: | Universiti Putra Malaysia |
الملخص: | In this study, we synthesized lithium manganese oxide nanoparticles/graphene nanoplatelets (LMO/GNPs) as the cathode material for a supercapabattery using a hydrothermal method. The addition of GNPs resulted in a 63 and 68 increase in specific capacitance and capacity compared to LMO alone, attributed to the enhanced conductivity and efficient lithium-ion diffusion of GNPs. The LMO/GNPs exhibited excellent rate capability and stability, with 80 capacity retention after 1000 cycles, an energy density of 39.07 Wh kgˆ’ 1 and a power density of 925.40 W kgˆ’ 11, showcasing their potential for supercapabattery applications. These findings highlight the superior performance of LMO/GNPs in the supercapabattery, making it a promising energy storage solution. |
---|