Mingjian Zhang

About Mingjian Zhang

Mingjian Zhang, With an exceptional h-index of 37 and a recent h-index of 31 (since 2020), a distinguished researcher at Peking University, specializes in the field of energy storage and conversion, especially Li-ion batteries.

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

Imitating Architectural Mortise‐Tenon Structure for Stable Ni‐Rich Layered Cathodes

Promoting Surface Electric Conductivity for High‐Rate LiCoO2

Correlating the dispersion of Li@ Mn6 superstructure units with the oxygen activation in Li-rich layered cathode

Heavy Fluorination via Ion Exchange Achieves High‐Performance Li–Mn–O–F Layered Cathode for Li‐Ion Batteries

Advanced electron energy loss spectroscopy for battery studies

Delocalized Li@ Mn6 superstructure units enable layer stability of high-performance Mn-rich cathode materials

Bipolar charge collecting structure enables overall water splitting on ferroelectric photocatalysts

Elastic lattice enabling reversible tetrahedral Li storage sites in a high‐capacity manganese oxide cathode

Mingjian Zhang Information

University

Position

Shenzhen graduate school

Citations(all)

4478

Citations(since 2020)

3291

Cited By

2245

hIndex(all)

37

hIndex(since 2020)

31

i10Index(all)

78

i10Index(since 2020)

66

Email

University Profile Page

Google Scholar

Mingjian Zhang Skills & Research Interests

energy storage and conversion

especially Li-ion batteries

Top articles of Mingjian Zhang

Imitating Architectural Mortise‐Tenon Structure for Stable Ni‐Rich Layered Cathodes

Advanced Materials

2023/5/6

Promoting Surface Electric Conductivity for High‐Rate LiCoO2

Angewandte Chemie

2023/3/1

Correlating the dispersion of Li@ Mn6 superstructure units with the oxygen activation in Li-rich layered cathode

Energy Storage Materials

2022/3/1

Heavy Fluorination via Ion Exchange Achieves High‐Performance Li–Mn–O–F Layered Cathode for Li‐Ion Batteries

Small

2022/2

Advanced electron energy loss spectroscopy for battery studies

2022/1

Delocalized Li@ Mn6 superstructure units enable layer stability of high-performance Mn-rich cathode materials

Chem

2022/8/11

Bipolar charge collecting structure enables overall water splitting on ferroelectric photocatalysts

Nature Communications

2022/7/22

Elastic lattice enabling reversible tetrahedral Li storage sites in a high‐capacity manganese oxide cathode

Advanced Materials

2022/7

Tuning core-shell structural architecture for high-performance Li-Mn-O layered oxides

Nano Energy

2022/6/1

Surface Design with Cation and Anion Dual Gradient Stabilizes High‐Voltage LiCoO2

Advanced Energy Materials

2022/5

P2/O3 biphasic Fe/Mn-based layered oxide cathode with ultrahigh capacity and great cyclability for sodium ion batteries

Nano Energy

2021/12/1

Tunning the linkage of structure units to enable stable spinel-based cathode in the wide potential window

Nano Energy

2021/11/1

Revealing Roles of Co and Ni in Mn‐Rich Layered Cathodes

Advanced Energy Materials

2021/11

Impact of electrolyte salts on Na storage performance for high-surface-area carbon anodes

ACS Applied Materials & Interfaces

2021/10/8

Modifying Li@Mn6 Superstructure Units by Al Substitution to Enhance the Long‐Cycle Performance of Co‐Free Li‐Rich Cathode

Advanced Energy Materials

2021/10

Inherent inhibition of oxygen loss by regulating superstructural motifs in anionic redox cathodes

Nano Energy

2021/10/1

Recent progress in Li and Mn rich layered oxide cathodes for Li-ion batteries

2021/10/1

Structural origin of the high-voltage instability of lithium cobalt oxide

Nature Nanotechnology

2021/5

Regulating the near-infrared region to visible-light emission by adjusting cuprophilic interactions for blue light-excited phosphors

Journal of Materials Chemistry C

2021

From bulk to interface: electrochemical phenomena and mechanism studies in batteries via electrochemical quartz crystal microbalance

2021

See List of Professors in Mingjian Zhang University(Peking University)