Prospects of nanostructured composite materials for energy harvesting and storage

可再生能源 储能 超级电容器 能量转换 化石燃料 光伏系统 太阳能 纳米技术 材料科学 发电 工艺工程 包含能量 能源工程 环境科学 废物管理 工程类 电气工程 化学 物理化学 功率(物理) 物理 热力学 量子力学 电化学 电极
作者
Idowu David Ibrahim,Emmanuel Rotimi Sadiku,Tamba Jamiru,Yskandar Hamam,Yasser Alayli,Azunna Agwo Eze
出处
期刊:Journal of King Saud University - Science [Elsevier]
卷期号:32 (1): 758-764 被引量:30
标识
DOI:10.1016/j.jksus.2019.01.006
摘要

In the 21st century, energy demand and the attendant environmental degradation, are among the most challenging issues. The concern is due to the high dependence, globally on fossil fuels as a form of energy generation. Over 6.5 billion people worldwide require approximately 13 Terawatts of energy for their day-to-day needs. In order to achieve the required energy demand, there is a need to diversify into other forms of energy; in this case, renewable energy. In so doing, there is the need to study, extensively, alternative materials and sources needed for energy generation, storage, distribution and application. There has been a significant advancement in energy generation, conversion and storage, such as fuel cells and solar cells, photovoltaic cells, supercapacitors, batteries, etc. The emergence of nanostructured and composite materials has resulted in some significant contributions towards the improvement in the energy industry development. Renewable energy, such as wind and solar energies, depend considerably, on the environmental conditions, which are not always stable. Hence, in order to harness the energy from these sources and to adequately store such energy, there is a need for a high-performance energy conversion and storage system for the energy generation process. In this regard, carbon nanomaterials, metallic sulphides, titanium oxide and many other nanostructured materials have been studied, to a large extent, for energy conversions and storage devices. The importance of nanostructured and composite materials has shown, from researches, to resolve the issues surrounding energy from generation to storage.
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