Yunpei Zhu

About Yunpei Zhu

Yunpei Zhu, With an exceptional h-index of 39 and a recent h-index of 34 (since 2020), a distinguished researcher at King Abdullah University of Science and Technology, specializes in the field of Energy Technology.

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

Magnetic field-enabled ultrahigh-rate Zn metal anodes

An ultrafast Na-ion battery chemistry through coupling sustainable organic electrodes with modulated aqueous electrolytes

Peptide gel electrolytes for stabilized Zn metal anodes

AgxZny Protective Coatings with Selective Zn2+/H+ Binding Enable Reversible Zn Anodes

Preferential Pyrolysis Construction of Carbon Anodes with 8400 h Lifespan for High‐Energy‐Density K‐ion Batteries

Cathode and electrolyte chemistry for scalable zinc ion battery

End-capping of hydrogen bonds: A strategy for blocking the proton conduction pathway in aqueous electrolytes

A Sustainable NH4+ Ion Battery by Electrolyte Engineering

Yunpei Zhu Information

University

Position

___

Citations(all)

6650

Citations(since 2020)

4955

Cited By

3723

hIndex(all)

39

hIndex(since 2020)

34

i10Index(all)

61

i10Index(since 2020)

57

Email

University Profile Page

Google Scholar

Yunpei Zhu Skills & Research Interests

Energy Technology

Top articles of Yunpei Zhu

An ultrafast Na-ion battery chemistry through coupling sustainable organic electrodes with modulated aqueous electrolytes

Energy & Environmental Science

2024

AgxZny Protective Coatings with Selective Zn2+/H+ Binding Enable Reversible Zn Anodes

Nano Letters

2023/6/28

Preferential Pyrolysis Construction of Carbon Anodes with 8400 h Lifespan for High‐Energy‐Density K‐ion Batteries

Angewandte Chemie International Edition

2023/4/17

Cathode and electrolyte chemistry for scalable zinc ion battery

2023/2/9

End-capping of hydrogen bonds: A strategy for blocking the proton conduction pathway in aqueous electrolytes

Energy Storage Materials

2023/1/1

Regulating the redox reversibility of zinc anode toward stable aqueous zinc batteries

Nano Energy

2022/8/1

Co-solvent electrolyte engineering for stable anode-free zinc metal batteries

Journal of the American Chemical Society

2022/4/18

Three-Dimensional Ti3C2Tx MXene-Prussian Blue Hybrid Microsupercapacitors by Water Lift-Off Lithography

ACS nano

2022/1/28

MoS2‐Mediated Epitaxial Plating of Zn Metal Anodes

Advanced Materials

2023/2

All-Mxene Thermoelectric Nanogenerator

Materials Today Energy

2022/10/1

Hydrated eutectic electrolytes for high-performance Mg-ion batteries

Energy & Environmental Science

2022

Controlled deposition of zinc‐metal anodes via selectively polarized ferroelectric polymers

Advanced Materials

2022/1

An Aqueous Mg2+‐Based Dual‐Ion Battery with High Power Density

Advanced Functional Materials

2021/12

Zincophilic Laser‐Scribed Graphene Interlayer for Homogeneous Zinc Deposition and Stable Zinc‐Ion Batteries

Energy Technology

2021/10

Hierarchically structured Ti3C2Tx MXene paper for Li-S batteries with high volumetric capacity

Nano Energy

2021/8/1

Nanoporous metal phosphonate hybrid materials as a novel platform for emerging applications: a critical review

2021/6

An unconventional full dual-cation battery

Nano Energy

2021/3/1

See List of Professors in Yunpei Zhu University(King Abdullah University of Science and Technology)