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Hydrothermal synthesis of graphene oxide interspersed in non-uniform tungsten oxide nanorod and its performance towards highly efficient hybrid supercapacitor
In this study, hybrid graphene oxide/tungsten oxide nanostructures (GO/WO 3 NSs) are
synthesized using an eco-friendly and efficient hydrothermal method. Physicochemical …
synthesized using an eco-friendly and efficient hydrothermal method. Physicochemical …
Synergy unleashed: NiMoO4/WO3/NF nanoflowers elevate for supercapacitor performance
IK Durga, DK Kulurumotlakatla… - Journal of Physics and …, 2024 - Elsevier
Nickel molybdate oxide (NiMoO 4) and tungsten trioxide (WO 3) are becoming progressively
more commonly suitable as electrode materials for supercapacitors owing to their chemical …
more commonly suitable as electrode materials for supercapacitors owing to their chemical …
Microwave-modulated graded porous carbon for supercapacitors: pore size matching and operating voltage expansion
J Fu, Y Chen, R Ma, H Huang, J Luo, H Zheng… - Journal of Colloid and …, 2024 - Elsevier
Optimizing the pore structure and its interaction with the electrolytes was vital for enhancing
the performance of supercapacitors based on the electrical double layer mechanism. In this …
the performance of supercapacitors based on the electrical double layer mechanism. In this …
Research progress on flexible WO3 based thin film electrodes for supercapacitor applications: a comprehensive review
In recent years, there has been significant research interest in flexible supercapacitors as
energy storage devices for enhancing wearable and portable electronics. This is due to their …
energy storage devices for enhancing wearable and portable electronics. This is due to their …
Transparent supercapacitors with networked MXene on NiCo-layered double hydroxide
This study investigates the growth mechanisms of NiCo-layered double hydroxide (LDH)
electrodeposition on indium tin oxide (ITO) substrates, aiming to optimize thickness control …
electrodeposition on indium tin oxide (ITO) substrates, aiming to optimize thickness control …
Exploring the synergistic effect of temperature on hydrothermally synthesized tungsten oxide (WO3) nanostructures and its role in asymmetric liquid-state hybrid …
UV Shembade, SB Wategaonkar… - Colloids and Surfaces A …, 2024 - Elsevier
The objective of this study was to produce non-uniform nanostructures (NSs) with different
crystalline structures of the tungstate oxide (WO 3) using the simple hydrothermal method for …
crystalline structures of the tungstate oxide (WO 3) using the simple hydrothermal method for …
Flexible Ce-doped WO3 nanowire arrays with enriched oxygen vacancies for soft-packaged asymmetric supercapacitor
Y Li, W Zhou, Z Huang, Q Pan, X Zhao, M Zhang… - Applied Surface …, 2024 - Elsevier
Tungsten trioxide (WO 3) is recognized as a promising anode material for asymmetric
supercapacitors (ASCs), yet its low conductivity and stability as well as energy density …
supercapacitors (ASCs), yet its low conductivity and stability as well as energy density …
Synthesis of CuO/NiO nanostructured hybrid electrode for supercapacitors
Supercapacitors employing copper metal oxides have garnered significant interest due to
their substantial theoretical capacity and expansive active surface area. However, the …
their substantial theoretical capacity and expansive active surface area. However, the …
Tailoring the electrochemical performance of monoclinic Ni2P2O7 microstructure across different alkaline electrolytes
The impact of varying electrolytic solutions on the electrochemical performance of electrode
substances is significant. Consequently, this research investigates the effects of different …
substances is significant. Consequently, this research investigates the effects of different …
Elevated asymmetric supercapacitor with the nickel-metal organic framework derived nickel oxide/nickel composite: designed to optimize efficiency and reliability
In this study, a solvothermal method is used to synthesizes MOF-derived NiO/Ni composites
and NiO samples at various calcination temperatures (350° C, 450° C, 550° C, and 650° C) …
and NiO samples at various calcination temperatures (350° C, 450° C, 550° C, and 650° C) …