材料科学
宽带
荧光粉
光电子学
机械容积
运动学
脉冲(物理)
波长
纳米技术
工作(物理)
生物相容性材料
计算机科学
机械工程
微粒
作者
Yunfeng Fang,Yuanyuan Dou,Yuhe Shao,Mingyue Chen,Fenglong Sun,Zhen Song,Quanlin Liu
标识
DOI:10.1016/j.mattod.2026.103208
摘要
The development of near-infrared (NIR) mechanoluminescent materials that operate autonomously without external excitation is crucial for deep-tissue biomechanical sensing but remains challenging due to the scarcity of efficient, long-wavelength emitting systems. Herein, we report a highly efficient, self-recoverable NIR-I mechanoluminescent material based on Cr 3+ -doped MgNb 2 O 6 . Through strategic Li + co-doping for charge compensation, we achieved a 2.75-fold enhancement in mechanoluminescent intensity. The optimized phosphor exhibits broadband emission centered at 880 nm, representing one of the longest wavelengths reported for Cr 3+ -activated mechanoluminescent systems. This deep-penetrating NIR-I emission enables detectable mechano-optical signaling through up to 10 mm of biological tissue. Leveraging this capability, we design a proof-of-concept application as a smart, mechano-responsive liner for in situ monitoring of implant kinematics and positioning accuracy in total knee arthroplasty. This work not only introduces a high-performance NIR-I mechanoluminescent material but also opens new avenues for real-time, non-invasive surveillance of bio-implants and deep-tissue biomechanics.
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