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A NbOI2-based flexible piezoelectric sensor for acoustic signal acquisition and gesture-controlled human-machine interaction systems.

Created on 18 Aug 2026

Authors

Jinsheng Zhu, Kun Lv, Senhao Li, Minjuan Liang, Ping Chen

Published in

Nanoscale. Aug 18, 2026. Epub Aug 18, 2026.

Abstract

Driven by the demand for low-power sensing in wearable electronics and intelligent human-machine interaction, two-dimensional piezoelectric materials, which combine self-powered capability, mechanical flexibility, and integration compatibility, provide a promising material platform for high-performance flexible sensors. In this work, a flexible piezoelectric sensor based on two-dimensional NbOI2 was constructed on a polyimide substrate. The device exhibits stable and repeatable piezoelectric responses over bending angles from 30° to 75° and operating frequencies from 0.47 to 2.10 Hz. At a bending angle of 75°, the peak output current reaches 167.01 pA. Under the conditions of a bending angle of 45° and a bending frequency of 1.31 Hz, after more than 1000 bending cycles, the device retains approximately 95.0% of its initial output performance, demonstrating excellent electromechanical conversion capability and mechanical durability. Furthermore, the device enables acoustic signal acquisition, mechanical motion recognition, and gesture-triggered control and was successfully integrated into a human-machine interaction system for smart-home control and robotic-hand manipulation. This work highlights the potential of NbOI2-based flexible piezoelectric sensors in self-powered sensing, acoustic acquisition, and intelligent interaction, providing a practical reference for the integration of two-dimensional piezoelectric materials into flexible electronic systems.

PMID:
42610877
Bibliographic data and abstract were imported from PubMed on 18 Aug 2026.

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