G
Gaowu Qin
Researcher at Northeastern University (China)
Publications - 360
Citations - 8244
Gaowu Qin is an academic researcher from Northeastern University (China). The author has contributed to research in topics: Alloy & Microstructure. The author has an hindex of 36, co-authored 278 publications receiving 5063 citations. Previous affiliations of Gaowu Qin include Chinese Ministry of Education & Beijing University of Technology.
Papers
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Journal ArticleDOI
Properties and Applications of the β Phase Poly(vinylidene fluoride).
TL;DR: The basic knowledge and character methods for PVDF fabrication are discussed and an overview of recent advances on the phase modification and recent applications of the β phase PVDF are reported to provide an insight for the development and utilization of βphase PVDF nanofilms in future electronics.
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Facile “Green” Synthesis, Characterization, and Catalytic Function of β‐D‐Glucose‐Stabilized Au Nanocrystals
TL;DR: It is shown that these beta-D-glucose-stabilized Au nanocrystals function as effective catalyst for the reduction of 4-nitrophenol in the presence of NaBH4 (otherwise unfeasible if only the strong reducing agent NaBh4 is employed), which was reflected by the UV/Vis spectra of the catalytic reaction kinetics.
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Development of low-alloyed and rare-earth-free magnesium alloys having ultra-high strength
Hucheng Pan,Gaowu Qin,Yunmiao Huang,Yuping Ren,Xuechao Sha,Xiaodong Han,Zhi-Quan Liu,Cai-Fu Li,Xiaolei Wu,Houwen Chen,Cong He,Linjiang Chai,Yunzhi Wang,Jian Feng Nie,Jian Feng Nie +14 more
TL;DR: In this article, a low-alloyed Mg-2Sn-2Ca alloy (in wt.%) is reported, which exhibits tunable ultra-high tensile yield strength (360-440 MPa) depending on extrusion parameters.
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Recent developments in rare-earth free wrought magnesium alloys having high strength: A review
TL;DR: In this paper, a review of recent researches on the rare-Earth free Magnesium alloys is presented, and the new strengthening mechanism, such as the solute clustering which was recently observed in Magnesium-Rare-Earth alloys and the other Rare-Earth-free Magnesium systems, is suggested.
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Mechanistic investigation of a low-alloy Mg–Ca-based extrusion alloy with high strength–ductility synergy
Hucheng Pan,Rui Kang,Li Jingren,Hongbo Xie,Zhuoran Zeng,Qiuyan Huang,Changlin Yang,Yuping Ren,Gaowu Qin +8 more
TL;DR: In this article, a low-alloy Mg-Ca-based alloy that overcomes this strength-ductility trade-off is designed, which has an excellent tensile yield strength (∼425 MPa).