01/09/2026
香港理工大學黃維揚教授、陶鵬博士與韓國延世大學金相佑教授的一項合作研究於2026年8月14日發表於《自然·納米技術》期刊,論文題為「由納米級銥磷光體實現的可生物吸收及光學可讀摩擦電植入裝置」。
該研究介紹了一種無需電池、可被人體吸收的摩擦電植入裝置。此裝置在產生電力輸出的同時,可讓醫護人員從體外讀取裝置狀態的可視化訊號。研究團隊採用以數據驅動的「從材料到裝置」設計方法,結合機器學習輔助的光物理篩選,成功識別出可用於光學顯示及摩擦電荷產生的納米級銥(III)配位化合物。這項突破有望推動更安全、更易於監測的生物電子植入裝置發展,並有助實現及時的醫療介入。
《自然·納米技術》是國際頂尖期刊,刊登納米科學與技術各領域的重要研究成果。
瀏覽完整文章:https://www.nature.com/articles/s41565-026-02256-4
Collaborative research by PolyU (Prof. Wai-Yeung Wong and Dr Peng Tao) and Yonsei University (Prof. Sang-Woo Kim) was published on 14 August 2026 in the prestigious journal Nature Nanotechnology under the title “Bioresorbable and optically readable triboelectric implants enabled by nanoscale iridophosphors”.
This paper reports a battery-free, bioresorbable triboelectric implant that enables externally readable, on-demand visualization of device status while generating electrical output. The team developed a data-driven materials-to-device approach, combining machine-learning-assisted photophysical screening to identify nanoscale iridium(III) complexes for optical reporting and triboelectric charge generation. This breakthrough could lead to safer, easier-to-monitor bioelectronic implants and facilitate timely medical intervention.
Nature Nanotechnology is a leading journal publishing high-impact research across all areas of nanoscience and nanotechnology.
Read the full article: https://www.nature.com/articles/s41565-026-02256-4