Recent advances in metal oxides as energy storage materials: synthesis, characterisation, and electrochemical studies for sustainable energy storage

作者
Alvena Shahid,Zohra Nazir Kayani
标识
DOI:10.1117/12.3051729
摘要

One of the most difficult problems the world is now experiencing is climate change. Global warming has long-term, regional effects on ethics, science, society, politics, and the economy. Renewable energy sources and energy storage technologies are potential solutions to this problem. The current study highlights the role that metal oxide supercapacitors play in advancing sustainable energy practices. This aligns with many Sustainable Development Goals (SDGs), such as Goal 13 (Climate Action) and Goal 7 (Affordable and Clean Energy). This work investigates the manufacture of metal oxide supercapacitors via hydrothermal synthesis and in situ polymerization, emphasizing their electrochemical characteristics, stability, and conductivity. Furthermore, X-ray diffractometer (XRD) analyses of metal oxide materials' crystal structures, which provide light on crystal phases, crystallite size, and orientation. Using a scanning electron microscope (SEM), the metal oxide electrode's surface morphology is examined. Electrochemical properties are studied by optimizing a setup which includes the selection of the electrodes, electrolyte, and cell configuration, for supercapacitor testing. This work uses UV spectrophotometry to study electronic transitions in metal oxide materials, with a focus on photonics. This research explores the development of advanced metal oxide supercapacitors, which offer practical solutions for global warming, clean energy development, and sustainable energy storage.

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