Jing Xie

Xinjiang University

Xinjiang

China

SCHOLARLY PAPERS

8

DOWNLOADS

253

TOTAL CITATIONS

7

Scholarly Papers (8)

1.

Lanthanum-Doped Na4fe3(Po4)2p2o7 Enhanced Embedded Pseudocapacitance and Ion Diffusion Kinetics as High-Performance Cathode Material for Sodium-Ion Batteries

Number of pages: 27 Posted: 11 Apr 2024
Xinjiang Normal University, Henan University of Technology, Xinjiang University, Xinjiang University, Xinjiang University and Xinjiang University
Downloads 54 (820,660)
Citation 4

Abstract:

Loading...

Sodium-ion batteries, Polyanionic compound, Embedded pseudocapacitance, La-doping, Na4Fe3(PO4)2(P2O7)

2.

The Synergistic Approach of Sol-Gel and Freeze-Drying Techniques in Crafting Lanthanum-Doped Na4fe3(Po4)2p2o7 as Cathode Materials in Sodium-Ion Battery with Enhanced Ion Diffusion Kinetics and Embedded Pseudocapacitance

Number of pages: 26 Posted: 27 May 2024
Xinjiang Normal University, Henan University of Technology, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University and Xinjiang University
Downloads 46 (884,645)

Abstract:

Loading...

Sodium-ion batteries, Sol-gel and freeze-drying, Embedded pseudocapacitance, La-doping, Na4Fe3(PO4)2(P2O7)

3.

Innovative Synthesis and Comprehensive Electrochemical Evaluation of Fevo 4  For Enhanced Sodium-Ion Battery Performance

Number of pages: 35 Posted: 10 Apr 2024
Henan University of Technology, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang Normal University and Xinjiang University
Downloads 32 (1,020,699)

Abstract:

Loading...

Sodium-ion batteries, Anode material, FeVO4, High-performance

Ultra-Thin Sns2 Nanosheets Grown on Carbon Nanofibers with High-Performance in Sodium-Ion Energy Storage

Number of pages: 22 Posted: 26 Jun 2024
Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University, Beijing University of Chemical Technology, Xinjiang University, Xinjiang Normal University, Xinjiang University and Xinjiang University
Downloads 16 (1,253,902)
Citation 2

Abstract:

Loading...

Sodium ion batteries, Electrospinning, SnS2/CNF, Ultra-thin nanosheets, Sodium-ion hybrid capacitors

Ultra-Thin Sns2 Nanosheets Grown on Carbon Nanofibers with High-Performance in Sodium-Ion Energy Storage

Number of pages: 21 Posted: 24 Apr 2024
Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University, Beijing University of Chemical Technology, Xinjiang University, Xinjiang Normal University, Xinjiang University and Xinjiang University
Downloads 15 (1,267,173)

Abstract:

Loading...

Sodium ion batteries, Electrospinning, SnS2/CNF, Ultra-thin Nanosheets, Sodium-ion hybrid capacitors

5.

Bi Vacancy-Induced Bi2o2s Nanosheets for Remarkably Boosting Piezocatalytic Performance

Number of pages: 20 Posted: 17 Sep 2024
Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University and Xinjiang University
Downloads 28 (1,065,847)

Abstract:

Loading...

Bi2O2S nanosheets, Bismuth vacancies, Piezocatalysis, Degradation of organic pollutants

6.

Investigation of Sodium Storage in Α- and Β- Phase Cu2v2o7 Materials as Anodes for Sodium Ion Batteries

Number of pages: 21 Posted: 07 Jan 2025
Henan University of Technology, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University and Xinjiang University
Downloads 26 (1,089,447)

Abstract:

Loading...

In-situ XRD, anode, Cu2V2O7, XAFS

7.

Innovative Synthesis and Comprehensive Electrochemical Evaluation of Fevo4 for Enhanced Sodium-Ion Battery Performance

Number of pages: 42 Posted: 09 May 2024
Henan University of Technology, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang Normal University and Xinjiang University
Downloads 26 (1,089,447)

Abstract:

Loading...

Sodium-ion batteries, Anode material, FeVO4, High-performance

8.

Synergistic Promotion for the Performance of Photocatalytic Carbon Dioxide Reduction by Vacancy Engineering and N-Doped Carbon Nanotubes

Number of pages: 25 Posted: 15 Feb 2024
Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University, Xinjiang University and Xinjiang University
Downloads 10 (1,279,106)
Citation 1

Abstract:

Loading...

Photocatalysis, CO2 reduction, Sulfur-rich vacancies, CdS, Carbon nanotubes