Ultrafast Synthesis for Functional Nanomaterials

被引:55
|
作者
Jiang, Rui [1 ]
Da, Yumin [2 ]
Han, Xiaopeng [1 ]
Chen, Yanan [1 ]
Deng, Yida [1 ]
Hu, Wenbin [1 ,2 ]
机构
[1] Tianjin Univ, Sch Mat Sci & Engn,Minist Educ, Tianjin Key Lab Composite & Funct Mat, Key Lab Adv Ceram & Machining Technol, Tianjin 300072, Peoples R China
[2] Joint Sch Natl Univ Singapore & Tianjin Univ, Int Campus Tianjin Univ, Fuzhou 350207, Peoples R China
来源
CELL REPORTS PHYSICAL SCIENCE | 2021年 / 2卷 / 01期
基金
中国国家自然科学基金;
关键词
REDUCED GRAPHENE OXIDE; MICROWAVE-ASSISTED SYNTHESIS; IN-SITU SYNTHESIS; LASER-ABLATION; RUTHENIUM NANOPARTICLES; SHOCK SYNTHESIS; ENERGY-STORAGE; METAL-OXIDES; LIQUID; REDUCTION;
D O I
10.1016/j.xcrp.2020.100302
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Nanomaterials have attracted extensive attention in the field of energy storage and conversion because of their unique functions. Compared with conventional methods, the ultrafast synthesis strategy with exceptional kinetic conditions shows great potential and broad prospects in controllable metastable material fabrication. Herein, the mechanisms and advantages of representative ultrafast synthesis approaches, including spray pyrolysis (SP), microwave (MW), laser ablation in liquid (LAL), and high-temperature shock (HTS) are introduced. HTS is highlighted as the latest technique for nanomaterials with tunable properties. These recent advances evidence the potential of ultrafast synthesis toward performance-tunable nanosized materials for various applications. Finally, we summarize the key issues remains to be resolved and provide an outlook that may be beneficial to guide future development of this promising field.
引用
收藏
页数:19
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