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题名

Electrochemical Synthesis of Nanostructured Metal-Doped Titanates and Investigation of Their Activity as Oxygen Evolution Photoanodes

作者
发表日期
2018-10
DOI
发表期刊
ISSN
2574-0962
卷号1期号:10页码:5233-5244
摘要

Mixed and doped metal oxides are excellent candidates for commercial energy applications such as batteries, supercapacitors, solar cells, and photocatalyts due to their activity, stability, tailorable band edge and bandgaps, and low cost. However, the routes commonly employed in their synthesis present synthetic bottlenecks with reliance on sacrificial materials, the use of high temperatures, long reaction times, and little ability to control morphology, thus compromising their scaleup. Herein, we present the single-pot, electrochemical synthesis of high surface area, doped metal titanate nanostructures, including Na2Ti3O7 (NTO), 25 wt % Sn:NTO, 5 wt % Fe:NTO, and 3 wt % Cu:NTO. The synergistic use of the cathodic corrosion method with suspended droplet alloying (SDA) led to materials with excellent homogeneity, presenting a promising route for the screening, production, and discovery of electroactive materials. As proof of concept of the synthetic control and impact on reactivity, we found that the photoanodic oxygen evolution activity of the nanomaterials was adversely affected by Fe and Sn doping into NTO while Cu doping, at 3 wt %, displayed significant improvement. This work demonstrates the ability of the cathodic corrosion method to obtain compositionally and structurally controlled mixed-metal oxides in a rapid fashion, thus creating new opportunities in the field of materials engineering and the systematic study of compositional gradients on the (photo)electrochemical performance of metal oxide nanoparticles.

关键词
相关链接[来源记录]
收录类别
SCI ; EI ; ESCI
语种
英语
学校署名
其他
资助项目
University of Illinois[] ; Engineering and Physical Sciences Research Council[EP/K014714/1] ; University of Birmingham[]
WOS研究方向
Materials Science
WOS类目
Materials Science, Multidisciplinary
WOS记录号
WOS:000458706600017
出版者
EI入藏号
20200708177041
EI主题词
Corrosion ; Costs ; Metal Nanoparticles ; Morphology ; Nanostructured Materials ; Oxygen ; Sodium Compounds ; Tin Compounds ; Titanium Compounds
EI分类号
Nanotechnology:761 ; Chemical Products Generally:804 ; Cost And Value Engineering ; Industrial Economics:911 ; Materials Science:951
来源库
Web of Science
引用统计
被引频次[WOS]:7
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/27134
专题工学院_材料科学与工程系
作者单位
1.Univ Birmingham, Sch Chem, Birmingham B15 2TT, W Midlands, England;
2.Univ Birmingham, Birmingham Ctr Strateg Elements & Crit Mat, Birmingham B15 2TT, W Midlands, England;
3.Univ Birmingham, Sch Met & Mat, Birmingham B15 2TT, W Midlands, England;
4.Rutherford Appleton Lab, UK Catalysis Hub, Res Complex Harwell, Oxford OX11 0FA, England;
5.UCL, Dept Chem, Kathleen Lonsdale Bldg,Gordon St, London WC1H 0AJ, England;
6.Southern Univ Sci & Technol, Dept Mat Sci & Engn, 1088 Xueyuan Blvd, Shenzhen 518055, Guangdong, Peoples R China;
7.ASML, MI DE DOCCS Defect EUV Reticle & Plasma, Run 6501, NL-5504 DR Veldhoven, Netherlands;
8.Univ Illinois, Dept Chem, Urbana, IL 61801 USA
推荐引用方式
GB/T 7714
Lawrence, Matthew J.,Celorrio, Veronica,Shi, Xiaobo,et al. Electrochemical Synthesis of Nanostructured Metal-Doped Titanates and Investigation of Their Activity as Oxygen Evolution Photoanodes[J]. ACS Applied Energy Materials,2018,1(10):5233-5244.
APA
Lawrence, Matthew J..,Celorrio, Veronica.,Shi, Xiaobo.,Wang, Qi.,Yanson, Alex.,...&Rodriguez, Paramaconi.(2018).Electrochemical Synthesis of Nanostructured Metal-Doped Titanates and Investigation of Their Activity as Oxygen Evolution Photoanodes.ACS Applied Energy Materials,1(10),5233-5244.
MLA
Lawrence, Matthew J.,et al."Electrochemical Synthesis of Nanostructured Metal-Doped Titanates and Investigation of Their Activity as Oxygen Evolution Photoanodes".ACS Applied Energy Materials 1.10(2018):5233-5244.
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