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在CaZnOS:Tb, Sm中实现用于多色应力传感的可调机械发光

Achieving Tunable Mechanoluminescence in CaZnOS:Tb, Sm for Multicolor Stress Sensing.

作者信息

Wang Wenqi, Li Zihui, Wang Ziying, Xiang Zhizhi, Wang Zhenbin, Li Sixia, Zhang Mingjin, Liu Weisheng

机构信息

School of Chemistry and Chemical Engineering, Qinghai Normal University, Xining 810008, China.

Qinghai Key Laboratory of Advanced Technology and Application of Environmental Functional Materials, Xining 810016, China.

出版信息

Nanomaterials (Basel). 2024 Jul 30;14(15):1279. doi: 10.3390/nano14151279.

Abstract

Mechanoluminescent (ML) materials can exhibit visible-to-near-infrared mechanoluminescence when responding to the fracture or deformation of a solid under mechanical stimulation. Transforming mechanical energy into light demonstrates promising applications in terms of visual mechanical sensing. In this work, we synthesized the phosphor CaZnOS:Tb, Sm, which exhibited intense and tunable multicolor mechanoluminescence without pre-irradiation. Intense green ML materials were obtained by doping Tb with different concentrations. Tunable multicolor mechanoluminescence (such as green, yellow-green, and orange-red) could be realized by combining green emission (about 542 nm), attributed to Tb, and red emission (about 600 nm) generated from the Sm in the CaZnOS substrate. The tunable multicolor ML materials CaZnOS:Tb, Sm exhibited intense luminance and recoverable mechanoluminescence when responding to mechanical stimulation. Benefiting from the excellent ML performance and multicolor tunability in CaZnOS:Tb, Sm, we mixed the phosphor with PDMS and a curing agent to explore its practical application. An application for visual mechanical sensing was designed for handwriting identification. By taking a time-lapsed shot while writing, we easily obtained images of the writer's handwriting. The images of the ML intensity were acquired by using specific software to transform the shooting data. We could easily distinguish people's handwriting through analyzing the different ML performances.

摘要

机械发光(ML)材料在受到机械刺激时,对固体的断裂或变形做出响应时,能够呈现出从可见光到近红外的机械发光。将机械能转化为光在视觉机械传感方面显示出有前景的应用。在这项工作中,我们合成了磷光体CaZnOS:Tb, Sm,它在没有预辐照的情况下表现出强烈且可调节的多色机械发光。通过掺杂不同浓度的Tb获得了强烈的绿色ML材料。通过将归因于Tb的绿色发射(约542 nm)和CaZnOS基质中Sm产生的红色发射(约600 nm)相结合,可以实现可调节的多色机械发光(如绿色、黄绿色和橙红色)。可调节的多色ML材料CaZnOS:Tb, Sm在受到机械刺激时表现出强烈的亮度和可恢复的机械发光。受益于CaZnOS:Tb, Sm优异的ML性能和多色可调性,我们将磷光体与聚二甲基硅氧烷(PDMS)和固化剂混合以探索其实际应用。设计了一种用于手写识别的视觉机械传感应用。通过在书写时拍摄延时照片,我们轻松获得了书写者的手写图像。通过使用特定软件转换拍摄数据来获取ML强度的图像。通过分析不同的ML性能,我们可以轻松区分人们的手写笔迹。

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