黄星灿
研究员
所属院部: 医学院
访问次数:
基本信息
  • 电子邮箱:
  • 入职时间:
    2026-07
  • 所在单位:
    生物医学工程学院
  • 职务:
  • 学历:
    研究生(博士)毕业
  • 性别:
  • 学位:
    博士
  • 毕业院校:
    香港城市大学
  • 博士生导师
  • 硕士生导师
学科:
生物医学工程
教师简介

黄星灿,山东大学生物医学工程学院研究员,山东大学齐鲁青年学者。2024年9月于香港城市大学生物医学工程系获博士学位,师从于欣格教授,随后继续在该组从事博士后研究,期间赴瑞典卡罗琳斯卡医学院访问交流。主要研究方向为柔性生物电子、柔性传感、脑机接口、柔性可穿戴/植入式器件、柔性智能诊疗系统等,以一作 / 共同一作在 Nat. Commun.、Sci. Adv.、Adv. Mater.、InfoMat 等顶刊发表论文 20 余篇,Google Scholar获引4800余次,H指数38

工作经历
  • 2024-09 — 2026-06
    香港城市大学
    博士后研究员
科研成果
论文

1.  A skin-interfaced three-dimensional closed-loop sensing and therapeutic electronic wound bandage.  Nature Communications, 

2.  Thin, soft, wearable system for continuous wireless monitoring of artery blood pressure.  Nature Communications, 

3.  Battery-free, wireless, and electricity-driven soft swimmer for water quality and virus monitoring.  Science Advances, 

4.  Transient, Implantable, Ultrathin Biofuel Cells Enabled by Laser-Induced Graphene and Gold Nanoparticles Composite.  Nano Letters, 

5.  Miniaturized, Portable Gustation Interfaces for VR/AR/MR.  PNAS, 

6.  Army Ant Nest Inspired Adaptive Textile for Smart Thermal Regulation and Healthcare Monitoring.  Advanced Materials, 

7.  Stretchable Magnesium-Air Battery Based on Dual Ions Conducting Hydrogel for Intelligent Biomedical Applications.  InfoMat, 

8.  Garment embedded sweat-activated batteries in wearable electronics for continuous sweat monitoring.  npj Flexible Electronics, 

9.  Intelligent Soft Sweat Sensors for the Simultaneous Healthcare Monitoring and Safety Warning.  Advanced Healthcare Materials, 

10.  Epidermal self-powered sweat sensors for glucose and lactate monitoring.  Bio-Design and Manufacturing, 

11.  Wearable biofuel cells based on the classification of enzyme for high power outputs and lifetimes.  Biosensors and Bioelectronics, 

12.  Self-Driven, Stretchable Drug Delivery Electronics for Acne Treatment.  ACS Nano, 

13.  Stretchable Sweat-activated Battery in Skin-Integrated Electronics for Continuous Wireless Sweat Monitoring.  Advanced Science, 

14.  Triboelectric Nanogenerator Enabled Sweat Extraction and Power Activation for Sweat Monitoring.  Advanced Functional Materials, 

15.  Bandage Based Energy Generators Activated by Sweat in Wireless Skin Electronics for Continuous Physiological Monitoring.  Nano Energy, 

16.  Wearable and battery‐free wound dressing system for wireless and early sepsis diagnosis.  Bioengineering & Translational Medicine, 

17.  Skin-integrated, stretchable, transparent triboelectric nanogenerators based on ion-conducting hydrogel for energy harvesting and tactile sensing.  Nano Energy, 

18.  Sweat powered, skin adhesive multimodal sensor for long term and real time sweat monitoring.  BMEMat, 

19.  Exploring the shape and distribution of electrodes in membraneless enzymatic biofuel cells for high power output.  International Journal of Hydrogen Energy, 

20.  A sensitive H2O2 biosensor based on carbon nanotubes/tetrathiafulvalene and its application in detecting NADH.  Analytical Biochemistry, 

21.  Skin-integrated Haptic Interfaces enabled by Scalable Mechanical Actuators for Virtual Reality.  IEEE Internet of Things Journal, 

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