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Junzhe Li

Researcher at Northeastern University (China)

Publications -  9
Citations -  307

Junzhe Li is an academic researcher from Northeastern University (China). The author has contributed to research in topics: Cathode & Hydrothermal synthesis. The author has an hindex of 8, co-authored 8 publications receiving 226 citations.

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Hydrothermal synthesis and characterization of α-Fe2O3/C using acid-pickled iron oxide red for Li-ion batteries.

TL;DR: This method provides information for the synthesis of α-Fe2O3/C with acid-pickled iron oxide red for the first time, which may help alleviate the problem of energy shortage and environmental pollution through the rational use of resources.
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Improvement of strength-toughness combination in austempered low carbon bainitic steel: The key role of refining prior austenite grain size

TL;DR: In this article, a low carbon bainitic steel with ultra high strength of ∼1650 MPa and elongation and toughness of ∼ 16% and ∼72 J/cm2 respectively, was obtained through austempering.
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Three-Dimensional Honeycomb-Structural LiAlO2-Modified LiMnPO4 Composite with Superior High Rate Capability as Li-Ion Battery Cathodes

TL;DR: The 3D binder-free electrode exhibits high rate capability as well as superior cycling stability with a capability of ∼105 mAh g-1 and 98.4% capacity retention after 100 cycles at a high discharge rate of 10 C.
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Facile synthesis of carbon-LiMnPO4 nanorods with hierarchical architecture as a cathode for high-performance Li-ion batteries

TL;DR: LiMnPO4 has attracted massive interest due to its appropriate redox potential and higher theoretical energy density as mentioned in this paper, and a strategy to transform common LiNPO4 into dispersive, hierarchical, nanorod-like structure by vacuum immersion using anodic aluminum oxide templates.
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Ag-decorated highly mesoporous Co3O4 nanosheets on nickel foam as an efficient free-standing cathode for Li-O2 batteries

TL;DR: In this article, the authors showed that the homogeneous distribution of Ag nanoparticles on free-standing, highly mesoporous Co3O4 nanosheets showed the synergistic effect of the high electrocatalyst reactions toward the ORR from Ag and OER from M-Co 3O4/NF.