World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
45
Citations
6920
World Ranking
1547
National Ranking
189

Materials Science

D-Index
47
Citations
7974
World Ranking
11152
National Ranking
3084

Overview

Shien-Ping Feng is affiliated with the City University of Hong Kong in China, focusing their research primarily within the fields of Engineering and Materials Science. Their scholarly output includes a considerable body of work in Electrical and Electronic Engineering, Materials Chemistry, Polymers and Plastics, Renewable Energy, Sustainability and the Environment, and Biomedical Engineering.

Their research explores diverse topics, notably in Perovskite Materials and Applications, Conducting Polymers and Applications, Advanced Thermoelectric Materials and Devices, Quantum Dots Synthesis and Properties, Supercapacitor Materials and Fabrication, Advanced Battery Technologies Research, and Advanced Sensor and Energy Harvesting Materials.

Frequent publication venues for Shien-Ping Feng include:

  • Advanced Functional Materials
  • Materials Today Physics
  • Advanced Science
  • ACS Applied Materials & Interfaces
  • ACS Energy Letters

Shien-Ping Feng's collaboration network is reflected in recurrent co-authorship with:

  • Rui Cheng
  • Zhiwen Zhou
  • Sijia Wang
  • Yang Luo
  • Yinghong Wu

Among their recent publications are:

  • "Giant thermopower of ionic gelatin near room temperature" (2020, Science)
  • "Development and application of fuel cells in the automobile industry" (2021, Journal of Energy Storage)
  • "Hydrogels as Soft Ionic Conductors in Flexible and Wearable Triboelectric Nanogenerators" (2022, Advanced Science)
  • "Hofmeister Effect and Electrostatic Interaction Enhanced Ionic Conductive Organohydrogels for Electronic Applications" (2021, Advanced Functional Materials)
  • "Biomechanical Energy Harvesters Based on Ionic Conductive Organohydrogels via the Hofmeister Effect and Electrostatic Interaction" (2021, ACS Nano)

Best Publications

  • Giant thermopower of ionic gelatin near room temperature.

    Cheng-Gong Han;Xin Qian;Qikai Li;Qikai Li;Biao Deng

  • Programmable artificial phototactic microswimmer

    Baohu Dai;Jizhuang Wang;Ze Xiong;Xiaojun Zhan

  • Tannic Acid/Fe3+ Nanoscaffold for Interfacial Polymerization: Toward Enhanced Nanofiltration Performance

    Zhe Yang;Zhi-wen Zhou;Hao Guo;Zhikan Yao

  • Broadband Light Management with Thermochromic Hydrogel Microparticles for Smart Windows

    Xin-Hao Li;Chang Liu;Chang Liu;Shien-Ping Feng;Nicholas Xuanlai Fang

  • Development and application of fuel cells in the automobile industry

    Yang Luo;Yinghong Wu;Bo Li;Tiande Mo

  • Tailoring Triple‐Anion Perovskite Material for Indoor Light Harvesting with Restrained Halide Segregation and Record High Efficiency Beyond 36%

    Rui Cheng;Chih‐Chun Chung;Hong Zhang;Fangzhou Liu

  • Hydrogels as Soft Ionic Conductors in Flexible and Wearable Triboelectric Nanogenerators

    Unknown

  • Thermal Percolation in Stable Graphite Suspensions

    Ruiting Zheng;Jinwei Gao;Jinwei Gao;Jianjian Wang;Shien-Ping Feng;Shien-Ping Feng

  • Enhanced ion tolerance of electrokinetic locomotion in polyelectrolyte-coated microswimmer.

    Xiaojun Zhan;Jizhuang Wang;Ze Xiong;Xuan Zhang

  • Hofmeister Effect and Electrostatic Interaction Enhanced Ionic Conductive Organohydrogels for Electronic Applications

    Unknown

  • Direct thermal charging cell for converting low-grade heat to electricity.

    Xun Wang;Yu-Ting Huang;Chang Liu;Kaiyu Mu

  • Effects of Iodine Content in the Electrolyte on the Charge Transfer and Power Conversion Efficiency of Dye-Sensitized Solar Cells under Low Light Intensities

    Jo-Lin Lan;Tzu-Chien Wei;Shien-Ping Feng;Chi-Chao Wan

  • The Synthesis of Nb-doped TiO2 Nanoparticles for Improved-Performance Dye Sensitized Solar Cells

    Haijun Su;Haijun Su;Yu-Ting Huang;Ya-Huei Chang;Peng Zhai

  • Highly Sensitive Metabolite Biosensor Based on Organic Electrochemical Transistor Integrated with Microfluidic Channel and Poly(N‐vinyl‐2‐pyrrolidone)‐Capped Platinum Nanoparticles

    Xudong Ji;Ho Yuen Lau;Xiaochen Ren;Boyu Peng

  • Biomechanical Energy Harvesters Based on Ionic Conductive Organohydrogels via the Hofmeister Effect and Electrostatic Interaction

    Yinghong Wu;Jingkui Qu;Xinghan Zhang;Kelong Ao

  • Self-Densified Optically Transparent VO2 Thermochromic Wood Film for Smart Windows.

    Sai Liu;Chi Yan Tso;Hau Him Lee;Yu Wei Du

  • ``Thermal Charging'' Phenomenon in Electrical Double Layer Capacitors

    Jianjian Wang;Shien-Ping Feng;Shien-Ping Feng;Yuan Yang;Nga Yu Hau

  • Hydrovoltaic energy harvesting from moisture flow using an ionic polymer–hydrogel–carbon composite

    Unknown

  • Organic Hybrid Perovskite (MAPbI3−xClx) for Thermochromic Smart Window with Strong Optical Regulation Ability, Low Transition Temperature, and Narrow Hysteresis Width

    Sai Liu;Yu Wei Du;Chi Yan Tso;Hau Him Lee

  • 3D Nanoprinting of Perovskites.

    Mojun Chen;Jihyuk Yang;Zhenyu Wang;Zhaoyi Xu

  • Light-stimulated actuators based on nickel hydroxide-oxyhydroxide

    K. W. Kwan;S. J. Li;N. Y. Hau;Wen-Di Li

  • Reliable contact fabrication on nanostructured Bi2Te3-based thermoelectric materials

    Shien Ping Feng;Ya Huei Chang;Jian Yang;Bed Poudel

  • Synergistic Reinforcement of Built‐In Electric Fields for Highly Efficient and Stable Perovskite Photovoltaics

    Wei Ting Wang;Peter Chen;Chien Hung Chiang;Tzung Fang Guo

Frequent Co-Authors

Chih-Ming Chen
Chih-Ming Chen National Chengchi University
Paddy K. L. Chan
Paddy K. L. Chan University of Hong Kong
Zhouguang Lu
Zhouguang Lu Southern University of Science and Technology
Meng Ni
Meng Ni Hong Kong Polytechnic University
Hong Zhang
Hong Zhang École Polytechnique Fédérale de Lausanne
Aleksandra B. Djurišić
Aleksandra B. Djurišić University of Hong Kong
Jinwei Gao
Jinwei Gao South China Normal University
Kin Man Yu
Kin Man Yu City University of Hong Kong
Nicholas X. Fang
Nicholas X. Fang University of Hong Kong
Paul K. Chu
Paul K. Chu City University of Hong Kong

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