World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
56
Citations
15618
World Ranking
2034
National Ranking
62

Materials Science

D-Index
58
Citations
15883
World Ranking
7574
National Ranking
441

Overview

Minshen Zhu is a researcher affiliated with Chemnitz University of Technology in Germany. Their work primarily concentrates on engineering and materials science, with a significant focus on electrical and electronic engineering, as well as materials chemistry and biomedical engineering.

Their research topics encompass advanced battery technologies, supercapacitor materials and fabrication, and energy harvesting materials. Specifically, their main topics of work include:

  • Advanced battery technologies research
  • Supercapacitor Materials and Fabrication
  • Advanced Battery Materials and Technologies
  • Advanced Sensor and Energy Harvesting Materials
  • Advancements in Battery Materials
  • Advanced Materials and Mechanics
  • Advanced Battery Technologies Research

Minshen Zhu has contributed to multiple scientific publications, often collaborating with frequent co-authors such as Oliver G. Schmidt, Daniil Karnaushenko, Hongmei Tang, Lixiang Liu, and Yang Huang.

Their publications appear predominantly in journals like Advanced Materials, Energy Storage Materials, Small, Advanced Energy Materials, and Nano Research Energy. Publication venues include:

  • Advanced Materials
  • Energy storage materials
  • Small
  • Advanced Energy Materials
  • Nano Research Energy

Selected notable papers by Minshen Zhu include:

  • A Patternable and In Situ Formed Polymeric Zinc Blanket for a Reversible Zinc Anode in a Skin-Mountable Microbattery (2021, Advanced Materials)
  • Tiny robots and sensors need tiny batteries - here's how to do it (2021, Nature)

Their co-authors with high collaboration frequency are:

  • Oliver G. Schmidt
  • Daniil Karnaushenko
  • Hongmei Tang
  • Lixiang Liu
  • Yang Huang

Minshen Zhu's research spans the domains of engineering disciplines with strong interdisciplinary integration in materials science, focusing on innovative energy storage technologies and materials engineering. The blend of topics they cover addresses the development of novel materials and mechanisms suitable for advanced battery and sensor applications.

Best Publications

  • Photoluminescent Ti3C2 MXene Quantum Dots for Multicolor Cellular Imaging

    Qi Xue;Huijie Zhang;Minshen Zhu;Zengxia Pei

  • An extremely safe and wearable solid-state zinc ion battery based on a hierarchical structured polymer electrolyte

    Hongfei Li;Cuiping Han;Yan Huang;Yang Huang

  • Nanostructured Polypyrrole as a flexible electrode material of supercapacitor

    Yang Huang;Hongfei Li;Zifeng Wang;Minshen Zhu

  • A self-healable and highly stretchable supercapacitor based on a dual crosslinked polyelectrolyte

    Yan Huang;Ming Zhong;Yang Huang;Minshen Zhu

  • Highly Flexible, Freestanding Supercapacitor Electrode with Enhanced Performance Obtained by Hybridizing Polypyrrole Chains with MXene

    Minshen Zhu;Yang Huang;Qihuang Deng;Jie Zhou

  • Ultrathin MXene-Micropattern-Based Field-Effect Transistor for Probing Neural Activity

    Bingzhe Xu;Minshen Zhu;Wencong Zhang;Xu Zhen

  • Waterproof and Tailorable Elastic Rechargeable Yarn Zinc Ion Batteries by a Cross-Linked Polyacrylamide Electrolyte

    Hongfei Li;Zhuoxin Liu;Guojin Liang;Yang Huang

  • Multifunctional Energy Storage and Conversion Devices

    Yan Huang;Minshen Zhu;Yang Huang;Zengxia Pei

  • Texturing in situ: N,S-enriched hierarchically porous carbon as a highly active reversible oxygen electrocatalyst

    Zengxia Pei;Hongfei Li;Yan Huang;Qi Xue

  • From industrially weavable and knittable highly conductive yarns to large wearable energy storage textiles.

    Yan Huang;Hong Hu;Yang Huang;Minshen Zhu

  • Recent Progress on Flexible and Wearable Supercapacitors

    Qi Xue;Jinfeng Sun;Yan Huang;Minshen Zhu

  • Magnetic-Assisted, Self-Healable, Yarn-Based Supercapacitor.

    Yang Huang;Yan Huang;Minshen Zhu;Wenjun Meng

  • High-performance stretchable yarn supercapacitor based on PPy@CNTs@urethane elastic fiber core spun yarn

    Jinfeng Sun;Yan Huang;Chenxi Fu;Zhengyue Wang

  • Mn3O4 nanoparticles on layer-structured Ti3C2 MXene towards the oxygen reduction reaction and zinc–air batteries

    Qi Xue;Zengxia Pei;Yan Huang;Minshen Zhu

  • Antifreezing Hydrogel with High Zinc Reversibility for Flexible and Durable Aqueous Batteries by Cooperative Hydrated Cations

    Minshen Zhu;Xiaojie Wang;Hongmei Tang;Jiawei Wang

  • Solid-State Rechargeable Zn//NiCo and Zn–Air Batteries with Ultralong Lifetime and High Capacity: The Role of a Sodium Polyacrylate Hydrogel Electrolyte

    Yan Huang;Zhen Li;Zengxia Pei;Zhuoxin Liu

  • A Patternable and In Situ Formed Polymeric Zinc Blanket for a Reversible Zinc Anode in a Skin-Mountable Microbattery.

    Minshen Zhu;Junping Hu;Qiongqiong Lu;Haiyun Dong

  • Super-high rate stretchable polypyrrole-based supercapacitors with excellent cycling stability

    Yan Huang;Jiayou Tao;Wenjun Meng;Minshen Zhu

  • Porous Fe3O4/carbon composite electrode material prepared from metal-organic framework template and effect of temperature on its capacitance

    Wenjun Meng;Wei Chen;Lei Zhao;Yang Huang

  • Towards wearable electronic devices: A quasi-solid-state aqueous lithium-ion battery with outstanding stability, flexibility, safety and breathability

    Zhuoxin Liu;Hongfei Li;Minshen Zhu;Yan Huang

Frequent Co-Authors

Chunyi Zhi
Chunyi Zhi University of Hong Kong
Yan Huang
Yan Huang Harbin Institute of Technology
Yang Huang
Yang Huang Shenzhen University
Zengxia Pei
Zengxia Pei University of Sydney
Hongfei Li
Hongfei Li City University of Hong Kong
Oliver G. Schmidt
Oliver G. Schmidt Chemnitz University of Technology
Zijie Tang
Zijie Tang City University of Hong Kong
Zhuoxin Liu
Zhuoxin Liu Shenzhen University
Hong Hu
Hong Hu Hong Kong Polytechnic University
Andrey L. Rogach
Andrey L. Rogach City University of Hong Kong

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