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Nengfei Yu

Researcher at Nanjing Tech University

Publications -  22
Citations -  961

Nengfei Yu is an academic researcher from Nanjing Tech University. The author has contributed to research in topics: Lithium & Anode. The author has an hindex of 11, co-authored 22 publications receiving 380 citations. Previous affiliations of Nengfei Yu include University of Wollongong.

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An Artificial Polyacrylonitrile Coating Layer Confining Zinc Dendrite Growth for Highly Reversible Aqueous Zinc-Based Batteries

TL;DR: A polyacrylonitrile coating layer on a zinc anode produced by a simple drop coating approach to address the dendrite issue is reported, providing a solid basis for application of aqueous rechargeable Zn batteries.
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Three-dimensional ordered porous electrode materials for electrochemical energy storage

TL;DR: Wang et al. as mentioned in this paper summarized recent advancements in 3D ordered porous (3DOP) electrode materials and their unusual electrochemical properties endowed by their intrinsic and geometric structures.
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Latest Advances in High-Voltage and High-Energy-Density Aqueous Rechargeable Batteries

TL;DR: Aqueous rechargeable batteries have become a lively research theme due to their advantages of low cost, safety, environmental friendliness, and easy manufacturing as mentioned in this paper. However, since its inception, the aqueous solution energy storage system has always faced some problems, such as the narrow electrochemical stability window of water, poor percolation of electrode materials, and low energy density.
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Highly efficient Co3O4/Co@NCs bifunctional oxygen electrocatalysts for long life rechargeable Zn-air batteries

TL;DR: In this paper, Co3O4/Co nano-heterojunctions tailored in nitrogen-doped porous graphitized carbon frameworks were synthesized via annealing Co-based metal-organic-frameworks (Co-based MOFs).
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Anchoring silicon on the basal plane of graphite via a three-phase heterostructure for highly reversible lithium storage

TL;DR: In this article, a three-phase heterostructure of graphite nanosheets (GNs) was used for the stabilization of silicon (Si) nanoparticles on the basal plane of GNs and their effect on both cycling performance and Coulombic efficiency.