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16 results on '"Gao, Xicheng"'

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1. Preparation of NiFe2O4@ slit modified hollow carbon fiber via electrospinning for supercapacitor electrode material.

2. Preparation of hollow core-shell structured Ti3C2@Ti2SnC/CNFs with stable electrochemical performance as anode material for lithium ion battery.

3. Facile synthesis of nanocrystalline high-entropy diboride powders by a simple sol-gel method and their performance in supercapacitor.

4. Morphology-controllable synthesis of NiFe2O4 growing on graphene nanosheets as advanced electrode material for high performance supercapacitors.

5. High-efficiency single-pixel imaging using discrete Hartley transform.

6. Pulse-Width Multiplexing ϕ-OTDR for Nuisance-Alarm Rate Reduction.

7. Electrochemical properties of four novel high-entropy spinel oxides used as lithium-ion battery anodes synthesized by the glycine-nitrate SCS method.

8. Heterostructure Co2N-Ni3N/NF nanoarrays synthesized by in situ nitriding treatment for high‑performance supercapacitor.

9. Hierarchical MnO2@NiCo2O4@Ti3SiC2/carbon cloth core-shell structure with superior electrochemical performance for all solid-state supercapacitors.

10. Bimetallic carbide Fe2MoC as electrode material for high-performance capacitive energy storage.

11. Hybridization of Ti2SnC with carbon nanofibers via electrospinning for improved lithium ion storage performance.

12. Improved lithium ion storage capacity of Ti2SnC via in-situ formation of SnO2.

13. A new perspective on the composition-structure-property relationships on Nb/Mo/Cr-doped O3-type layered oxide as cathode materials for sodium-ion batteries.

14. Ultrathin MgO coating on fabricated O3–NaNi0.45Mn0.3Ti0.2Zr0.05O2 composite cathode via magnetron sputtering for enhanced kinetic and durable sodium-ion batteries.

15. Superior electrochemical performance of O3-type NaNi0.5-xMn0.3Ti0.2ZrxO2 cathode material for sodium-ion batteries from Ti and Zr substitution of the transition metals.

16. Electrospun Fe2MoC/C nanofibers as an efficient electrode material for high-performance supercapacitors.

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