Advances in bioresorbable triboelectric nanogenerators

M Kang, DM Lee, I Hyun, N Rubab, SH Kim… - Chemical …, 2023 - ACS Publications
With the growing demand for next-generation health care, the integration of electronic
components into implantable medical devices (IMDs) has become a vital factor in achieving …

Self-powered sensing systems with learning capability

A Alagumalai, W Shou, O Mahian, M Aghbashlo… - Joule, 2022 - cell.com
Self-powered sensing systems augmented with machine learning (ML) represent a path
toward the large-scale deployment of the internet of things (IoT). With autonomous energy …

[HTML][HTML] Physically transient electronic materials and devices

JS Shim, JA Rogers, SK Kang - Materials Science and Engineering: R …, 2021 - Elsevier
Transient electronics, which can be tuned to be completely or partially dissoluble,
degradable, and disintegrable, create new opportunities in the upcoming ubiquitous …

Recent advances in soft functional materials: preparation, functions and applications

J Li, WY Wong, X Tao - Nanoscale, 2020 - pubs.rsc.org
Synthetic materials and biomaterials with elastic moduli lower than 10 MPa are generally
considered as soft materials. Research studies on soft materials have been boosted due to …

Advances in physicochemically stimuli-responsive materials for on-demand transient electronic systems

G Lee, YS Choi, HJ Yoon, JA Rogers - Matter, 2020 - cell.com
Transient electronics represents a class of technology defined by components that
physically or chemically disintegrate, dissolve, or otherwise disappear in a controlled …

Recent progress and future prospects in transient polymer electronics

EWC Chan, X Sun, J Travas-Sejdic - Macromolecules, 2023 - ACS Publications
Transient electronics is a rapidly growing field that focuses on the development of electronic
materials that are intentionally degraded to environmentally and physiologically safe …

Biologically safe, degradable self-destruction system for on-demand, programmable transient electronics

JW Shin, J Chan Choe, JH Lee, WB Han, TM Jang… - ACS …, 2021 - ACS Publications
The lifetime of transient electronic components can be programmed via the use of
encapsulation/passivation layers or of on-demand, stimuli-responsive polymers (heat, light …

Pathway of transient electronics towards connected biomedical applications

A Dutta, H Cheng - Nanoscale, 2023 - pubs.rsc.org
Transient electronic devices have shown promising applications in hardware security and
medical implants with diagnosing therapeutics capabilities since their inception. Control of …

Transient polymer electronics enabled by grafting of oligo-3-hexylthiophenes onto polycaprolactone

EWC Chan, X Sun, Y Uda, B Zhu, D Barker… - Journal of Materials …, 2024 - pubs.rsc.org
One of the desirable properties of organic electronics materials, especially for their use in
wearable and medical electronics, is transience, where the material undergoes controlled …

Calcium Alginate as an Active Device Component for Light-Triggered Degradation of 2D MoS2-Based Transient Electronics

MG Kaium, SS Han, CW Lee… - ACS Applied Materials & …, 2024 - ACS Publications
Transient electronics technology has enabled the programmed disintegration of functional
devices, paving the way for environmentally sustainable management of electronic wastes …