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首页> 外文期刊>Current Nanomaterials >Recent Advancements in Micro wave-Assisted Synthesis of NiO Nanostruc-tures and their Supercapacitor Properties: A Comprehensive Review
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Recent Advancements in Micro wave-Assisted Synthesis of NiO Nanostruc-tures and their Supercapacitor Properties: A Comprehensive Review

机译:微波辅助合成NIO纳米瘤的最新进展及其超级电容器特性:全面审查

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摘要

Nanostructure based energy storage devices with high surface area and conductivity are challenging requirements, which are extensively focused in the past few years. Recently, the nanostructures synthesis by microwave energy has become an increasingly popular theme among the scientific community to fulfill the energy storage demands at commercial scale. Since, microwave heating has reduced reaction times and side reactions with increased product yields and purity as compared to conventional heating methods. The high product yield is favorable at the industrial level, which is not possible by other synthesis techniques. On the other hand, supercapacitors have wide future applications, such as replacement of Li-Ion batteries due to cost effectiveness, high shelf-life and stable cycle life. Among various types of supercapacitors NiO has shown comparable supercapacitance to RuO2. A comprehensive overview of all synthesis techniques and reported supercapacitance results in comparison with microwave-assisted synthesis of NiO nanostructures are provided in this review article.
机译:基于纳米结构的高度表面积和电导率的能量存储装置是具有挑战性的要求,这些要求在过去几年中广泛聚焦。最近,微波能量的纳米结构已成为科学界中越来越受欢迎的主题,以满足商业规模的能量存储需求。由于与常规的加热方法相比,微波加热具有减少的反应时间和副反应,并与常规的加热方法相比增加产率和纯度。高产品产量在工业水平上有利,其他合成技术是不可能的。另一方面,超级电容器具有广泛的应用,例如由于成本有效性,高货架 - 生活和稳定的循环寿命,更换锂离子电池。各种类型的超级电容器中,NIO显示出可比的超级超水分对Ruo2。在本综述制品中提供了与微波辅助合成NiO纳米结构的所有合成技术的全面概述和报告的超级电容器。

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