基本情况

韩京,中山大学化学工程与技术学院博士后。博士毕业于香港理工大学时装与纺织学院,研究方向聚焦智能与可持续可穿戴设备、可穿戴电子产品、能量收集/转换/存储。在先进纳米材料、纺织材料与自供电功能材料方面具备系统研究基础,熟悉纺织基底微结构工程、可拉伸器件设计与材料表征分析。以第一作者发表SCI论文数篇,并参与香港政府资助项目(如GRF、ITF)相关研究工作。

 

联系方式

jingg.han@connect.polyu.hk

 

教育经历

2022.01–2025.08 香港理工大学|材料学|工学博士(GPA 3.19/4)
研究方向:智能和可持续可穿戴设备、可穿戴电子、能量收集/转换/存储。
2017.09–2020.06 天津师范大学|凝聚态物理|理学硕士(GPA 3.31/4)
荣誉:连续2次一等奖学金。
2013.09–2017.06 长治学院|物理学|理学学士(GPA 3.01/4)
荣誉:连续2次一等奖学金、知识竞赛一等奖。
 


工作经历

2026.03 至今  中山大学化学工程与技术学院,博士后

2020.06–2022.01 香港理工大学|科研助理
参与智能纺织品/可穿戴设备与能源收集方向研究;负责实验设计、数据分析与项目标书撰写;与物理、材料、电子、纺织跨学科团队协作,优化结构设计及电学/传感性能。

 

科研方向

可穿戴能源器件:摩擦电/储能/自供电传感
纺织基底微结构工程:分级屈曲/多孔微结构与界面调控
可持续材料与电子纺织品:热管理与多功能响应材料体系

 

论著一览 

代表性论文:

1.    Han J, Xu B, Fang C, et al. Hierarchically Porous Wearable Composites for High‐Performance Stretchable Supercapacitors[J]. Advanced Science, 2025: 2500835.中科院一区
2.    Han J, Li Z, Fang C, et al. Hierarchically porous architectured stretchable fibrous materials in energy harvesting and self-powered sensing[J]. Nano Energy, 2024, 129: 110080.中科院二区
3.    Han J, Xu B, Li Z, et al. Skin-inspired hierarchically buckled fibers with stretchable porous microarchitectures and customizable functionalities[J]. Chemical Engineering Journal, 2023, 464: 142606.中科院一区
4.    Li, Z., Lu, Y., Xiao, D., Sun, Y., Xu, Y., Han, J., ... & Li, C. Stretchable, self-healing, temperature-tolerant, multiple dynamic interaction-enabled conductive biomass eutectogels for energy harvesting and self-powered sensing[J]. Nano Energy, 2025, 135: 110630.中科院二区
5.    Han J, Xu B, Li Z. Study on Hierarchically Buckled Surface Regulation for Stretchable Porous Microarchitectures Fibers[C]//Journal of Physics: Conference Series. IOP Publishing, 2023, 2587(1): 012076.
6.    Han J, Hou X, Liu H, et al. Photocurrent enhancement on TiO2 nanotubes co-modified by N+ implantation and combustion of graphene[J]. Materials Letters, 2019, 238: 77-80.中科院四区
7.    Wang L, Han J, Feng J, et al. Simultaneously efficient light absorption and charge transport of CdS/TiO2 nanotube array toward improved photoelectrochemical performance[J]. International Journal of Hydrogen Energy, 2019, 44(59): 30899-30909.中科院二区
8.    Li Z, Xu B, Han J, et al. Interfacial polarization and dual charge transfer induced high permittivity of carbon dots‐based composite as humidity‐resistant tribomaterial for efficient biomechanical energy harvesting[J]. Advanced Energy Materials, 2021, 11(30): 2101294.中科院一区
9.    Li Z, Xu B, Han J, et al. A polycation‐modified nanofillers tailored polymer electrolytes fiber for versatile biomechanical energy harvesting and full‐range personal healthcare sensing[J]. Advanced Functional Materials, 2022, 32(6): 2106731.中科院一区
10.    Fang C, Xu B, Han J, et al. Pre‐Intercalation of Zn Ions to Enlarge and Stabilize Hierarchical Structure of ZnxMn-xSe Cathode for Flexible Zn‐Ion Capacitor[J]. Advanced Functional Materials, 2024, 34(26): 2310909.中科院一区
11.    Li Z, Xu B, Han J, et al. Surface-modified liquid metal nanocapsules derived multiple triboelectric composites for efficient energy harvesting and wearable self-powered sensing[J]. Chemical Engineering Journal, 2023, 460: 141737.中科院一区