Turning sound and force into light with AlN:Mn<sup>2+</sup> mechanoluminescence.

Barzowska, Justyna; Haider, Syed Shabhi; Zheng, Teng; Suchocki, Andrzej; Smet, Philippe F; Runowski, Marcin; Cherepy, Nerine J; Peng, Dengfeng et al. · Sci Adv · 2026

basic_science · Level V

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Abstract

The development of multifunctional photo- and mechanoluminescent materials capable of responding to diverse external stimuli, enabling the visualization of mechanical action and acoustic waves, is essential for next-generation sensing and optoelectronic technologies. In this study, we present Mn<sup>2+</sup>-doped aluminum nitride (AlN:Mn<sup>2+</sup>) as a luminescent material that simultaneously exhibits bright orange photoluminescence, strong and long-lasting persistent luminescence, thermoluminescence, and mechanoluminescence (ML). AlN:Mn<sup>2+</sup> demonstrates multimodal ML behavior under various mechanical stimuli, including friction, impact, and ultrasonic excitation, highlighting its potential for force and sound sensing applications across a wide range of environments. This is crucial for next-generation energy transformation, enabling the conversion of heat, force, and sound into light. The integration of persistent, thermal, mechanical, and acoustic luminescence within a single, robust, and chemically stable material makes AlN:Mn<sup>2+</sup> a promising candidate for remote, adaptive optomechanical, and photoacoustic applications in biomedical diagnostics, structural health monitoring, anticounterfeiting, remote sensing, and innovative electronics.