Full text

Turn on search term navigation

Copyright Nature Publishing Group May 2017

Abstract

Because of their exotic electronic properties and abundant active sites, two-dimensional (2D) materials have potential in various fields. Pursuing a general synthesis methodology of 2D materials and advancing it from the laboratory to industry is of great importance. This type of method should be low cost, rapid and highly efficient. Here, we report the high-yield synthesis of 2D metal oxides and hydroxides via a molten salts method. We obtained a high-yield of 2D ion-intercalated metal oxides and hydroxides, such as cation-intercalated manganese oxides (Na0.55 Mn2 O4 ·1.5H2 O and K0.27 MnO2 ·0.54H2 O), cation-intercalated tungsten oxides (Li2 WO4 and Na2 W4 O13 ), and anion-intercalated metal hydroxides (Zn5 (OH)8 (NO3 )2 ·2H2 O and Cu2 (OH)3 NO3 ), with a large lateral size and nanometre thickness in a short time. Using 2D Na2 W4 O13 as an electrode, a high performance electrochemical supercapacitor is achieved. We anticipate that our method will enable new path to the high-yield synthesis of 2D materials for applications in energy-related fields and beyond.

Details

Title
Rapid mass production of two-dimensional metal oxides and hydroxides via the molten salts method
Author
Hu, Zhimi; Xiao, Xu; Jin, Huanyu; Li, Tianqi; Chen, Ming; Liang, Zhun; Guo, Zhengfeng; Li, Jia; Wan, Jun; Huang, Liang; Zhang, Yanrong; Feng, Guang; Zhou, Jun
Pages
15630
Publication year
2017
Publication date
May 2017
Publisher
Nature Publishing Group
e-ISSN
20411723
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
1903441038
Copyright
Copyright Nature Publishing Group May 2017