Y
Yang Yang
Researcher at Guangdong University of Technology
Publications - 41
Citations - 2435
Yang Yang is an academic researcher from Guangdong University of Technology. The author has contributed to research in topics: Anode & Battery (electricity). The author has an hindex of 14, co-authored 41 publications receiving 765 citations.
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Challenges in the material and structural design of zinc anode towards high-performance aqueous zinc-ion batteries
TL;DR: In this article, the authors summarize the recent progress on general strategies to suppress zinc dendrites and zinc anode side reactions based on advanced materials and structure design, including the modification of the planar zinc electrode surface layer, internal structural optimization of the zinc bulk electrode, modification of electrolyte and construction of the multifunctional separator.
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Tuning the Kinetics of Zinc-Ion Insertion/Extraction in V2O5 by In Situ Polyaniline Intercalation Enables Improved Aqueous Zinc-Ion Storage Performance
Sucheng Liu,He Zhu,Binghao Zhang,Gen Li,Hekang Zhu,Yang Ren,Hongbo Geng,Yang Yang,Qi Liu,Cheng Chao Li +9 more
TL;DR: An in situ polyaniline (PANI) intercalation strategy is developed to facilitate the Zn2+ (de)intercalation kinetics in V2 O5, exhibiting a stable and highly reversible electrochemical reaction during repetitive Zn 2+ insertion and extraction.
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Synergistic Manipulation of Zn2+ Ion Flux and Desolvation Effect Enabled by Anodic Growth of a 3D ZnF2 Matrix for Long‐Lifespan and Dendrite‐Free Zn Metal Anodes
Yang Yang,Chaoyue Liu,Zeheng Lv,Hao Yang,Yufei Zhang,Minghui Ye,Libao Chen,Jinbao Zhao,Cheng Chao Li +8 more
TL;DR: In this article, a 3D interconnected ZnF2 matrix is designed on the surface of Zn foil (Zn@ZnF 2 ) through a simple and fast anodic growth method, serving as a multifunctional protective layer.
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Electronic Structure Regulation of Layered Vanadium Oxide via Interlayer Doping Strategy toward Superior High-Rate and Low-Temperature Zinc-Ion Batteries
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Zinc ions pillared vanadate cathodes by chemical pre-intercalation towards long cycling life and low-temperature zinc ion batteries
TL;DR: In this paper, a nanowire morphology (NH4)2V6O16·1.5H2O nanostructures fabricated via a facile microwave-assisted hydrothermal reaction are presented as a prospective zinc ion battery cathode.