Yun Ling

Postdoc Associate, Duke University

Research Expertise

Soft-electronics
Soft robotics
Wearable Devices
Ultrasound Therapy
Acoustofluidics

About

Yun is an engineering researcher with PhD and postdoctoral training, specializing in soft materials mechanics, structural design, and flexible device engineering. His work focuses on structure driven performance, reliability, and manufacturability of polymer based systems, bridging fundamental mechanics with practical device and process development. He has extensive experience in multi physics modeling, finite element analysis, and design optimization, using data driven methods strictly as tools to accelerate engineering decisions rather than as an end in themselves.

Publications

Gas‐Permeable, Multifunctional On‐Skin Electronics Based on Laser‐Induced Porous Graphene and Sugar‐Templated Elastomer Sponges
Advanced Materials
2018
Highly Selective Ionic Transport through Subnanometer Pores in Polymer Films
Advanced Functional Materials
2016
Multiscale porous elastomer substrates for multifunctional on-skin electronics with passive-cooling capabilities
Proceedings of the National Academy of Sciences
2019
Pencil–paper on-skin electronics
Proceedings of the National Academy of Sciences
2020
Laser‐Induced Graphene for Electrothermally Controlled, Mechanically Guided, 3D Assembly and Human–Soft Actuators Interaction
Advanced Materials
2020
Laser-induced graphene for bioelectronics and soft actuators
Nano Research
2021
Porous liquid metal–elastomer composites with high leakage resistance and antimicrobial property for skin-interfaced bioelectronics
Science Advances
2023
Bioinspired elastomer composites with programmed mechanical and electrical anisotropies
Nature Communications
2022
A Breathable, Reusable, and Zero-Power Smart Face Mask for Wireless Cough and Mask-Wearing Monitoring
ACS Nano
2022
Paper-based wearable electronics
iScience
2021
Phase-separated porous nanocomposite with ultralow percolation threshold for wireless bioelectronics
Nature Nanotechnology
2024
Mechanically Assembled, Three-Dimensional Hierarchical Structures of Cellular Graphene with Programmed Geometries and Outstanding Electromechanical Properties
ACS Nano
2018
Laser-scribed conductive, photoactive transition metal oxide on soft elastomers for Janus on-skin electronics and soft actuators
Science Advances
2022
4D Printing Elastic Composites for Strain-Tailored Multistable Shape Morphing
ACS Applied Materials & Interfaces
2020
Lignin-derived porous graphene for wearable and ultrasensitive strain sensors
Journal of Materials Chemistry C
2022
Skin‐Inspired Porous Mesh Bioelectronics with Built‐In Multifunctionality for Concurrently Monitoring Heart Electrical and Mechanical Functions
Advanced Functional Materials
2023
Ultrafast selective ionic transport through heat-treated polyethylene terephthalate track membranes with sub-nanometer pores
Radiation Measurements
2018
Highly Efficient Power Conversion from Salinity Gradients with Ion-Selective Polymeric Nanopores
Chinese Physics Letters
2016
Influence of UV-Irradiation on Latent Tracks in Polyethylene Terephthalate Films
Chinese Physics Letters
2016
Advances in laser processed material of soft sensing and soft actuation
Materials Today Communications
2023
Trimethylsilane Plasma-Nanocoated Silver Nanowires for Improved Stability
Materials
2024
Acoustic Properties of Different Steel Bridge Base Metals
ASNT Research Symposium 2023 Proceedings
2023

Education

University of Missouri

Ph.D., Mechanical Engineering / May, 2023

Columbia, Missouri, United States of America

Peking University

Master of Engineering, Nuclear Technology and Applications / June, 2016

Beijing

Huazhong University of Science and Technology

Bachelor of Science, Applied Physics / June, 2012

Wuhan

Experience

Duke University

Postdoc associate / March, 2023June, 2025

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