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Mingru Su

Jiangsu University

Xuefu Rd. 301

Xhenjiang, 212013

China

SCHOLARLY PAPERS

7

DOWNLOADS

347

TOTAL CITATIONS

1

Scholarly Papers (7)

Synthesis of Porous Carbon Na4fe3(Po4)2p2o7@C by Sol-Gel Method as a High-Rate Cathode for Sodium-Ion Batteries

Number of pages: 29 Posted: 23 Sep 2024
Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University and Jiangsu University
Downloads 79 (819,435)
Citation 1

Abstract:

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Sodium-ion batteries, cathode material, iron-based phosphate, porous carbon structure, Na4Fe3(PO4)2P2O7

Synthesis of Porous Carbon Na4fe3(Po4)2p2o7@C by Sol-Gel Method as a High-Rate Cathode for Sodium-Ion Batteries

Number of pages: 18 Posted: 21 Jan 2025
Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University and Jiangsu University
Downloads 27 (1,415,710)

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sodium-ion batteries, cathode material, iron-based phosphate, porous carbon structure, Na4Fe3(PO4)2P2O7

2.

Sodium Ion Stabilized Ammonium Vanadate as a High-Performance Aqueous Zinc-Ion Battery Cathode

Number of pages: 35 Posted: 11 Apr 2022
Jiangsu University, Jiangsu University, Jiangsu University, University of New South Wales (UNSW), Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University and University of New South Wales (UNSW) - School of Materials Science and Engineering
Downloads 97 (720,278)

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Aqueous zinc-ion batteries, Layered Vanadium oxide, Na-doped NH4V4O10, Cycle ability

3.

Highly Efficient and Scalable Synthesis of Sio X /Cnts/Sn Composite with Multi–Structure as High–Performance Anode Material for Lithium–Ion Batteries

Number of pages: 14 Posted: 27 Oct 2022
Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, affiliation not provided to SSRN and Jiangsu University
Downloads 45 (1,121,190)

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Lithium-ion batteries, Anode material, SiOx/CNTs/Sn, Cooperation, Electrochemical performance

4.

Carbon and Li 3 Bo 3 Co-Modified Sio X  As Anode for High-Performance Lithium-Ion Batteries

Number of pages: 20 Posted: 20 Dec 2022
Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University and Jiangsu University
Downloads 38 (1,209,354)

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Li-ion batteries, anode, SiOx, Carbon, Li3BO3, co-modification

5.

Carbon Coating and Oxygen Vacancies Modulated Wnb12o33 for High-Efficient Lithium-Ion Storage

Number of pages: 41 Posted: 16 Sep 2024
Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University and Jiangsu University
Downloads 29 (1,332,057)

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Lithium-ion batteries, Niobium tungsten oxides, carbon coating, oxygen vacancies

6.

Boosting Electrochemical Performance of Ti2nb10o29 Anodes Via Cl− Doping for High-Power Lithium-Ion Batteries

Number of pages: 22 Posted: 18 Mar 2025
Jiangsu University, Huzhou College School of Intelligent Manufacturing, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University, Jiangsu University and Jiangsu University
Downloads 23 (1,411,822)

Abstract:

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Lithium-ion batteries, Ti2Nb10O29, Cl− doping, oxygen vacancies, High-rate capability

7.

Synergistic dual-metal modulation enables high-energy sodium-ion batteries

Number of pages: 24 Posted: 17 Mar 2026
Jiangsu University, affiliation not provided to SSRN, affiliation not provided to SSRN, Shanghai University, Jiangsu University, Jiangsu University and Jiangsu University
Downloads 9 (1,548,648)

Abstract:

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Sodium-ion batteries, Na4Fe3(PO4)2(P2O7), Mn-substitution, Ta-doping, Polyanion materials