Title | Atomic-scale engineering of cation vacancies in two-dimensional unilamellar metal oxide nanosheets for electricity generation from water evaporation |
Author | |
Corresponding Author | Sasaki,Takayoshi; Xiong,Pan; Zhu,Junwu |
Joint first author | Liu,Chao; Ye,Caichao |
Publication Years | 2023-06-01
|
DOI | |
Source Title | |
ISSN | 2211-2855
|
EISSN | 2211-3282
|
Volume | 110Pages:108348 |
Abstract | Water evaporation-induced electricity generation, as an emerging energy harvesting technology, has recently attracted extensive attention owing to its ability to harvest electricity directly from the natural water evaporation process. However, the crucial issue that has restricted its practical applications is the low power density and conversion efficiency presented thus far, which generally originated from the weak water-solid interaction between evaporation-induced water flow and nanostructured materials. Exploration of a regulatory approach that can enhance water-solid interaction at an atomic level is highly demanded. Herein, we propose the Ti vacancy engineering at the atomic scale in two-dimensional (2D) unilamellar titanium oxide (TiO) nanosheets for efficient water evaporation-induced electricity generation. 2D TiO and TiO nanosheets with precisely controlled concentrations of Ti atomic vacancies are rationally designed. The water flow passes through the 2D gallery of nanosheets while the Ti atomic vacancies can effectively enhance the water-solid interaction between TiO nanosheets and water flow during the water evaporation process for electricity generation. As a result, a stable open-circuit voltage of ∼1.32 V for the hydrovoltaic device made of TiO nanosheets can be maintained for more than 250 h, outperforming those for the commercial TiO and TiO nanosheets. This work indicates a promising way to utilize defective 2D materials for hydrovoltaic technology. |
Keywords | |
URL | [Source Record] |
Indexed By | |
Language | English
|
SUSTech Authorship | 共同第一
; Others
|
Funding Project | Natural Science Foundation of China["22179062","52125202","51902161","U2004209"]
; Fundamental Research Funds for the Central Universities[30922010303]
; Guangdong Basic and Applied Basic Research Foundation[2022A1515110628]
; Guangdong Provincial Key Laboratory of Computational Science and Material Design[2019B030301001]
; Guangdong Innovation Research Team Project[2017ZT07C062]
; Fundamental Research Program of Shenzhen[JCYJ20190809174203802]
; CREST of the Japan Science and Technology Agency (JST)[JPMJCR17N1]
|
WOS Research Area | Chemistry
; Science & Technology - Other Topics
; Materials Science
; Physics
|
WOS Subject | Chemistry, Physical
; Nanoscience & Nanotechnology
; Materials Science, Multidisciplinary
; Physics, Applied
|
WOS Accession No | WOS:000966318500001
|
Publisher | |
Data Source | Web of Science
|
Publication Status | 在线出版
|
Citation statistics |
Cited Times [WOS]:0
|
Document Type | Journal Article |
Identifier | http://kc.sustech.edu.cn/handle/2SGJ60CL/524124 |
Department | Academy for Advanced Interdisciplinary Studies 工学院_材料科学与工程系 |
Affiliation | 1.Key Laboratory for Soft Chemistry and Functional Materials of Ministry Education,School of Chemistry and Chemical Engineering,Nanjing University of Science and Technology,Nanjing,210094,China 2.Academy for Advanced Interdisciplinary Studies & Guangdong Provincial Key Laboratory of Computational Science and Material Design,Southern University of Science and Technology,Shenzhen,518055,China 3.International Center for Materials Nanoarchitectonics (WPI-MANA),National Institute for Materials Science (NIMS),Tsukuba,Namiki 1-1, Ibaraki,Japan 4.Department of Materials Science and Engineering,Southern University of Science and Technology,Shenzhen,518055,China |
Recommended Citation GB/T 7714 |
Liu,Chao,Ye,Caichao,Wu,Yunyan,et al. Atomic-scale engineering of cation vacancies in two-dimensional unilamellar metal oxide nanosheets for electricity generation from water evaporation[J]. Nano Energy,2023,110:108348.
|
APA |
Liu,Chao.,Ye,Caichao.,Wu,Yunyan.,Liu,Yifan.,Liu,Zhihang.,...&Zhu,Junwu.(2023).Atomic-scale engineering of cation vacancies in two-dimensional unilamellar metal oxide nanosheets for electricity generation from water evaporation.Nano Energy,110,108348.
|
MLA |
Liu,Chao,et al."Atomic-scale engineering of cation vacancies in two-dimensional unilamellar metal oxide nanosheets for electricity generation from water evaporation".Nano Energy 110(2023):108348.
|
Files in This Item: | ||||||
File Name/Size | DocType | Version | Access | License | ||
52. Nano Energy_Atom(12190KB) | Restricted Access | -- |
|
Items in the repository are protected by copyright, with all rights reserved, unless otherwise indicated.
Edit Comment