scispace - formally typeset
Search or ask a question
Institution

Southwest University of Science and Technology

EducationMianyang, China
About: Southwest University of Science and Technology is a education organization based out in Mianyang, China. It is known for research contribution in the topics: Adsorption & Graphene. The organization has 10017 authors who have published 8923 publications receiving 94850 citations. The organization is also known as: Xīnán Kējìdàxué.


Papers
More filters
Journal ArticleDOI
TL;DR: The density of states of 17 kinds of rare earths (RE) doped rutile TiO2 was by using first-principles density functional theory (DFT) calculation.

76 citations

Journal ArticleDOI
TL;DR: In this article, a novel massif-like Cu x O nanostructure was directly growing on Cu foam via a facile thermal oxidation method in air atmosphere, and the massifs are about 5μm in mean diameter and 4mm in mean height, which consist of a large number of nanoparticles with mean size about 100nm.

76 citations

Journal ArticleDOI
TL;DR: In this paper, an experimental study was conducted on the heat transfer and pressure drop in horizontal narrow rectangular channels with mounted longitudinal vortex generators (LVGs) for water flow with Prandtl number Pr ǫ = 4-5.

76 citations

Journal ArticleDOI
TL;DR: In this paper, a novel design concept for fabricating 3D graphene (3D-rGO) directly from the GO mixed liquor with the assistant of sulphates is introduced, where sulphates are firstly generated on the surface of GO nanosheets, which are then removed by simple water-washing at the end of the synthesis.
Abstract: As a potential precursor for the scalable production of graphene, graphene oxide (GO) is of great importance, which can be prepared by the classical Hummers method. However, it is not only troublesome for separating and purifying GO from the obtained mixed liquor but also technically difficult to avoid the agglomeration of individual graphene sheets during the subsequent reduction process. In this paper, we introduce a novel design concept for fabricating 3D graphene (3D-rGO) directly from the GO mixed liquor with the assistant of sulphates. By using an artful anti-solvent precipitation method, sulphates (Na2SO4 and the impurities) are firstly generated on the surface of GO nanosheets, which are then removed by simple water-washing at the end of the synthesis. The choice of this method in the fabrication of rGO is motivated by the water-soluble nature of Na2SO4, which circumvents the intrinsic problems associated with the prevailing methods for GO separation, purification and reduction, making our approach green, highly efficient and cost-effective. The overall microstructure and phase evolutions of the samples at each step are observed and the formation mechanism of the rGO layers is also proposed. When evaluated as an anode material for Li-ion batteries, the obtained 3D-rGO exhibits the excellent electrochemical properties. The present approach inspires a new way for the fabrication of rGO powder on a large scale.

76 citations

Journal ArticleDOI
TL;DR: In this article, the effects of Al content and annealing treatment on the mechanical, electrical and magnetic properties of CoCrFeNiTiAl x (x : molar ratio) multi-component alloys were investigated.

76 citations


Authors

Showing all 10090 results

NameH-indexPapersCitations
Zhong Lin Wang2452529259003
Yi Yang143245692268
Jian Zhou128300791402
Wei Zhang104291164923
Lei Wang95148644636
Ray L. Frost86135641053
Tao Chen8682027714
Yong Zhou8468829569
Yuan Hu8374727774
Xuemei Chen7628124252
Xiangxue Wang6714513052
Zhong-Ming Li6648917514
Ke Li6265415407
Hui Zhang5871714386
Ning Hu5759314125
Network Information
Related Institutions (5)
South China University of Technology
69.4K papers, 1.2M citations

90% related

Dalian University of Technology
71.9K papers, 1.1M citations

90% related

Chongqing University
57.8K papers, 784.6K citations

90% related

Tianjin University
79.9K papers, 1.2M citations

89% related

University of Science and Technology Beijing
44.4K papers, 623.2K citations

89% related

Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202343
2022153
20211,251
20201,132
20191,033
2018740