Related Experiment Video
Updated: Sep 13, 2025

Bidirectional Electrical and Optoelectronic Interfaces in Healthy and Ischemic Ex Vivo Rat Hearts
Published on: July 18, 2025
Highly Sensitive Perovskite Nanowire Photodetectors Enabled by Surface State Engineering for Non-Contact Heart Rate
Gangjian Hu1, Luxin Zhang1, Xinglu Xu1
1State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, International Center of Future Science, Jilin University, Changchun, 130012, China.
None:
Non-contact heart rate detection is essential in health monitoring, emphasizing the need for highly sensitive photodetectors to ensure accurate measurement. Nanowire photodetectors, benefiting from surface states, exhibit excellent performance. However, the distribution and charge-trapping capability of these surface states are primarily dictated by the intrinsic material properties, limiting tunability. Herein, a strategy is presented to optimize MAPbI3 nanowire photodetectors through surface state engineering with C60. The C60 forms electron depletion zones in the nanowires, reducing noise current by 74% and tripling the photoresponse. As a result, a remarkable specific detectivity of 6.7 × 1014 Jones is achieved, which represents the highest value reported for MAPbI3 nanowire-based photodetectors as far as this study knows. This high-performance photodetector facilitates non-contact heart rate monitoring, demonstrating the ability to reliably detect pulse wave signals, surpassing the capabilities of commercial silicon photodetectors. This study believes that this work provides a pioneering approach to surface state engineering, advancing nanowire-based photodetectors for health monitoring applications.

