Ting Jin

About Ting Jin

Ting Jin, With an exceptional h-index of 26 and a recent h-index of 26 (since 2020), a distinguished researcher at Nankai University, specializes in the field of Batteries, Electrochemistry, Energy Storage Materials.

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

Towards the High‐Voltage Stability of Layered Oxide Cathodes for Sodium‐ion Batteries: Challenges, Progress, and Perspectives

Regulating the interfacial chemistry of graphite in ethyl acetate‐based electrolyte for low‐temperature Li‐ion batteries

Oxidation-promoting strategy boosts highly ordered Co-free Ni-rich layered oxides

Converting Residual Alkali into Sodium Compensation Additive for High-Energy Na-Ion Batteries

A Review on the Features and Progress of Silicon Anodes‐Based Solid‐State Batteries

Advantageous surface engineering to boost single-crystal quaternary cathodes for high-energy-density lithium-ion batteries

Radiation effects on lithium metal batteries

Growing curly graphene layer boosts hard carbon with superior sodium-ion storage

Ting Jin Information

University

Position

___

Citations(all)

4008

Citations(since 2020)

3798

Cited By

1253

hIndex(all)

26

hIndex(since 2020)

26

i10Index(all)

33

i10Index(since 2020)

33

Email

University Profile Page

Google Scholar

Ting Jin Skills & Research Interests

Batteries

Electrochemistry

Energy Storage Materials

Top articles of Ting Jin

Towards the High‐Voltage Stability of Layered Oxide Cathodes for Sodium‐ion Batteries: Challenges, Progress, and Perspectives

2024/3/21

Ting Jin
Ting Jin

H-Index: 14

Regulating the interfacial chemistry of graphite in ethyl acetate‐based electrolyte for low‐temperature Li‐ion batteries

Battery Energy

2024

Oxidation-promoting strategy boosts highly ordered Co-free Ni-rich layered oxides

Journal of Energy Storage

2023/11/1

Converting Residual Alkali into Sodium Compensation Additive for High-Energy Na-Ion Batteries

ACS Energy Letters

2023/10/20

A Review on the Features and Progress of Silicon Anodes‐Based Solid‐State Batteries

2023/10

Advantageous surface engineering to boost single-crystal quaternary cathodes for high-energy-density lithium-ion batteries

Energy Storage Materials

2023/8/1

Radiation effects on lithium metal batteries

The Innovation

2023/7/10

Growing curly graphene layer boosts hard carbon with superior sodium-ion storage

Nano Research

2023/7

Finding Cycles in Graph: A Unified Approach for Various NER Tasks

2023/6/18

Generating questions via unexploited OCR texts: prompt-based data augmentation for TextVQA

2023/6/18

Revealing the mechanisms of electrolyte additive PTS on Ni-rich electrode: Tolerance to high temperature (50° C) and high voltage (4.6 V)

Energy Storage Materials

2023/6/1

Understanding and quantifying capacity loss in storage aging of Ah‐level Li metal pouch cells

InfoMat

2023/5

Full-chain enhanced ion transport toward stable lithium metal anodes

Journal of Energy Chemistry

2023/4/1

A low-carbon strategy for revival of degraded single crystal LiNi0.6Co0.2Mn0.2O2

Rare Metals

2023/2

Air Instability of Ni‐Rich Layered Oxides–A Roadblock to Large Scale Application

2023/1

Ting Jin
Ting Jin

H-Index: 14

Chao Shen
Chao Shen

H-Index: 9

CO2‐Induced Melting and Solvation Reconfiguration of Phase‐Change Electrolyte

Advanced Materials

2022/7

Inorganic electrolyte for low‐temperature aqueous sodium ion batteries

Small

2022/4

Effect of the supergravity on the formation and cycle life of non-aqueous lithium metal batteries

Nature Communications

2022/1/10

Tailoring the surface chemistry of hard carbon towards high-efficiency sodium ion storage

Nanoscale

2022

Tailoring Pure Inorganic Electrolyte for Aqueous Sodium‐Ion Batteries Operating at− 60° C

Batteries & Supercaps

2022/12

Ting Jin
Ting Jin

H-Index: 14

Haixia Li
Haixia Li

H-Index: 14

See List of Professors in Ting Jin University(Nankai University)

Co-Authors

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