可再生能源
持续性
新兴技术
纳米技术
化石燃料
可扩展性
计算机科学
政府(语言学)
高效能源利用
生化工程
风险分析(工程)
业务
材料科学
工程类
电气工程
废物管理
哲学
生物
数据库
语言学
生态学
作者
Xueshan Hu,Daxian Zuo,Shaoru Cheng,Sihui Chen,Yang Liu,Wenzhong Bao,Sili Deng,Stephen J. Harris,Jiayu Wan
摘要
Energy and environmental issues have attracted increasing attention globally, where sustainability and low-carbon emissions are seriously considered and widely accepted by government officials. In response to this situation, the development of renewable energy and environmental technologies is urgently needed to complement the usage of traditional fossil fuels. While a big part of advancement in these technologies relies on materials innovations, new materials discovery is limited by sluggish conventional materials synthesis methods, greatly hindering the advancement of related technologies. To address this issue, this review introduces and comprehensively summarizes emerging ultrafast materials synthesis methods that could synthesize materials in times as short as nanoseconds, significantly improving research efficiency. We discuss the unique advantages of these methods, followed by how they benefit individual applications for renewable energy and the environment. We also highlight the scalability of ultrafast manufacturing towards their potential industrial utilization. Finally, we provide our perspectives on challenges and opportunities for the future development of ultrafast synthesis and manufacturing technologies. We anticipate that fertile opportunities exist not only for energy and the environment but also for many other applications.
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