Xiaobo Ji

About Xiaobo Ji

Xiaobo Ji, With an exceptional h-index of 98 and a recent h-index of 87 (since 2020), a distinguished researcher at Central South University, specializes in the field of Electrochemistry, Energy Storage, Batteries, Supercapacitors.

His recent articles reflect a diverse array of research interests and contributions to the field:

Pathways for MXenes in Solving the Issues of Zinc‐Ion Batteries: Achievements and Perspectives

Anode Materials for Sodium‐Ion Capacitors

Hydrophobic Hyamine‐Mediated Water‐Lean Electric Double Layer Boosting Reversible Dendrite‐Free Zinc Metal Anodes

Fundamental Understanding of Sodium‐Ion Capacitors Mechanism

Classification of Sodium‐Ion Capacitors Cell Configurations

Global “Interface‐Space” Dual‐Modulation by Functional Supramolecules Organic Frameworks on Aqueous Zinc‐Ion Batteries

Pre‐sodiation Technologies

Physical upcycling of spent artificial diamond accelerant into bifunctional oxygen electrocatalyst with dual-metal active sites for durable rechargeable Zn–air batteries

Xiaobo Ji Information

University

Position

___

Citations(all)

34140

Citations(since 2020)

27279

Cited By

16179

hIndex(all)

98

hIndex(since 2020)

87

i10Index(all)

394

i10Index(since 2020)

370

Email

University Profile Page

Google Scholar

Xiaobo Ji Skills & Research Interests

Electrochemistry

Energy Storage

Batteries

Supercapacitors

Top articles of Xiaobo Ji

Pathways for MXenes in Solving the Issues of Zinc‐Ion Batteries: Achievements and Perspectives

2024/3/11

Anode Materials for Sodium‐Ion Capacitors

Sodium Ion Capacitors: Mechanisms, Materials and Technologies

2024/1/3

Hydrophobic Hyamine‐Mediated Water‐Lean Electric Double Layer Boosting Reversible Dendrite‐Free Zinc Metal Anodes

Advanced Functional Materials

2024/3

Fundamental Understanding of Sodium‐Ion Capacitors Mechanism

Sodium Ion Capacitors: Mechanisms, Materials and Technologies

2024/1/3

Classification of Sodium‐Ion Capacitors Cell Configurations

Sodium Ion Capacitors: Mechanisms, Materials and Technologies

2024/1/3

Global “Interface‐Space” Dual‐Modulation by Functional Supramolecules Organic Frameworks on Aqueous Zinc‐Ion Batteries

Advanced Functional Materials

2024/3

Weifeng Wei
Weifeng Wei

H-Index: 33

Xiaobo Ji
Xiaobo Ji

H-Index: 65

Pre‐sodiation Technologies

Sodium Ion Capacitors: Mechanisms, Materials and Technologies

2024/1/3

Physical upcycling of spent artificial diamond accelerant into bifunctional oxygen electrocatalyst with dual-metal active sites for durable rechargeable Zn–air batteries

Nano Energy

2024/3/1

Recent Developments of Carbon Dots for Advanced Zinc‐Based Batteries: A Review

2024

A novel prediction method for assembly accuracy of rudder systems considering clearance factors

The International Journal of Advanced Manufacturing Technology

2024/2/26

Boosting the interfacial dynamics and thermodynamics in polyanion cathode by carbon dots for ultrafast-charging sodium ion batteries

Chemical Science

2024

Structural Distortion in the Wadsley‐Roth Niobium Molybdenum Oxide Phase Triggering Extraordinarily Stable Battery Performance

Angewandte Chemie International Edition

2024/2/26

Mechanism of Fast Storage of Li/Na in Complex Sb‐Based Hybrid System

Advanced Functional Materials

2024

Direct regeneration of cathode materials in spent lithium-ion batteries toward closed-loop recycling and sustainability

Journal of Power Sources

2024/1/1

An overview on the life cycle of lithium iron phosphate: synthesis, modification, application, and recycling

2024/2/25

Single atom vacancy engineering with highly reversible N4 sites enable ultra-low overpotential for durable zinc-ion supercapacitors

Energy Storage Materials

2024/2/25

Multifunctional fluorinated carbon dots artificial interface layer coupled with in-situ generated Zn2+ conductor interlayer enable ultra-stable Zn anode

Nano Energy

2024/1/1

Dual‐Confined Bead‐Like CoSe2@NC@NCNFs Bifunctional Catalyst Boosting Rechargeable Zinc‐Air Batteries†

Chinese Journal of Chemistry

2024/2/15

Rationally Designing Closed Pore Structure by Carbon Dots to Evoke Sodium Storage Sites of Hard Carbon in Low‐Potential Region

Advanced Functional Materials

2024/1

A review of carbon dots in synthesis strategy

2024/1/1

See List of Professors in Xiaobo Ji University(Central South University)

Co-Authors

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