Soft Ionic and Electronic Triboelectric Nanogenerators: Toward Attachable and Implantable Biomedical Applications

K Kyongtae Choi (Department of Mechanical Engineering Kyung Hee University Yongin Republic of Korea) J Jimin Park (Department of Chemical and Biomolecular Engineering) W Won Jun Song S Soohwan An (Center for Nanomedicine and Department of Anesthesiology, Perioperative and Pain Medicine, Brigham and Women’s Hospital) S Seonggyu Choe B Byeong‐Rak Keum (Department of Oral Medicine Infection, and Immunity Harvard School of Dental Medicine Boston Massachusetts USA) M Min Young Kim (Department of Psychology, Keimyung University) D Dae Hee Hwang (Department of Biology Massachusetts Institute of Technology Koch Institute for Integrative Cancer Research Cambridge Massachusetts USA) Y Young‐Geun Park (Department of Mechanical Engineering Massachusetts Institute of Technology Cambridge Massachusetts USA) S Sung‐Won Kim (Department of Orthopaedic Surgery Stanford University School of Medicine Redwood City California USA) S Sangyul Baik (Department of Mechanical Engineering Sungkyunkwan University Suwon Republic of Korea) G Gwang‐Bum Im (Department of Cardiac Surgery Boston Children's Hospital Boston Massachusetts USA) Y Younghoon Lee

Abstract

ABSTRACT The growing societal demand for convenient and personalized healthcare solutions has driven significant progress in human‐interactive technologies. Soft electronics, with their extrinsic deformability, have sparked innovations in the design of stretchable and highly adaptable biomedical devices that enhance wearability. Despite these advancements, portable power sources remain a key limitation, constrained by short operating times and the inconvenience of frequent recharging or battery replacement. To overcome this hurdle, triboelectric nanogenerators (TENGs), which convert mechanical energy into electricity, have emerged as promising sustainable power sources, offering high efficiency, lightweight design, and self‐sustaining operation. Recent developments in integrating TENGs with ionic materials have enabled their use on or beneath the skin, allowing the harvesting of biomechanical energy that would otherwise be wasted to power healthcare devices. This review provides a comprehensive overview of attachable and implantable TENGs, classified by electronic and ionic materials, and examines their material choices, device structures, and operational mechanisms. This review further explores various sustainable biomedical applications, assessing the performance of these devices in both sustainable power sources and self‐powered physiological signal sensing. Finally, key future research directions are outlined, including sweat tolerance, skin compliance, AI‐enabled TENG biointerfaces, acoustic transparency, minimally invasive implantation strategies, and regulatory considerations for clinical translation.

Article Details

Volume / Issue Vol. 38, Issue 32
Published June 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (13)

K

Kyongtae Choi

Department of Mechanical Engineering Kyung Hee University Yongin Republic of Korea

J

Jimin Park

Department of Chemical and Biomolecular Engineering

W

Won Jun Song

S

Soohwan An

Center for Nanomedicine and Department of Anesthesiology, Perioperative and Pain Medicine, Brigham and Women’s Hospital

S

Seonggyu Choe

B

Byeong‐Rak Keum

Department of Oral Medicine Infection, and Immunity Harvard School of Dental Medicine Boston Massachusetts USA

M

Min Young Kim

Department of Psychology, Keimyung University

D

Dae Hee Hwang

Department of Biology Massachusetts Institute of Technology Koch Institute for Integrative Cancer Research Cambridge Massachusetts USA

Y

Young‐Geun Park

Department of Mechanical Engineering Massachusetts Institute of Technology Cambridge Massachusetts USA

S

Sung‐Won Kim

Department of Orthopaedic Surgery Stanford University School of Medicine Redwood City California USA

S

Sangyul Baik

Department of Mechanical Engineering Sungkyunkwan University Suwon Republic of Korea

G

Gwang‐Bum Im

Department of Cardiac Surgery Boston Children's Hospital Boston Massachusetts USA

Y

Younghoon Lee