
Prof. SONG Enming (宋恩名)
Institute of Optoelectronics, Fudan University (复旦大学光电研究院)
+86-18001987868
Research Interests
1. Soft Electronic Materials
2. Active Semiconducting Bioelectronics
3. Micro/Nano Electronic System
4. Neuroscience Engineering
5. Chronic Neural Interfaces
8/2021-present, Associate Professor
Institute of Optoelectronics
Fudan University, China
9/2020-5/2021, Research Associate
Department of Biomedical Engineering (BME)
City University of Hong Kong, Hong Kong, China
2/2018-9/2020, Postdoctoral Research Fellow
Simpson Querrey Institute for Bioelectronics (Advisor: Prof. John A. Rogers)
Northwestern University, USA
2/2018-1/2019, Adjunct Research Assistant Professor
Department of Materials Science and Engineering
University of Illinois at Urbana-Champaign, USA
9/2015-9/2017, Joint Ph.D. as visiting scholar
Department of Materials Science and Engineering (Advisor: Prof. John A. Rogers)
University of Illinois at Urbana-Champaign, USA
9/2011-1/2018, Ph.D.
Materials Science (Advisor: Prof. MEI Yongfeng)
Fudan University, China
9/2007-7/2011, B. S.
Materials Science
Fudan University, China
2025
Xiaomi Young Scholar
2024
The Nomination Prize for Fudan University's 'Top Ten Scientific and Technological Advances' of 2024
2023
2023 Microsystems & Nanoengineering (MINE) Young Scientist
Alibaba DAMO Academy Young Fellow Award 'Most Potential Prize'
2022
The 2022 Shanghai Science & Technology 35 under 35
2021
UNIDO's Scientific and Technological Innovation Award
MIT Technology Review Innovators Under 35 Asia Pacific
Program of Qiu Suo Excellent Youth Talent Research Group Leader, Shanghai Center for Brain Science and Brain-Inspired Technology
Shanghai Thousands of Talent Youth Program, Shanghai Government
2020
Ten Excellent Research Progress for Semiconductor Devices in China, Best Award Nominee, Journal of Semiconductor, China
Earlier
Best Poster Award Nominee, Principles of Multi-Layer Encapsulant Design for Wearable and Implantable Systems, Materials Research Society, Boston, 2018
Excellent Doctorate Dissertation, Ultra-thin, Single Crystalline Silicon Nanomembranes for Flexible Electronic Systems, Fudan University, 2017