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首页> 外文期刊>Nanoscale >A single-beam NIR laser-triggered full-color upconversion tuning of a Er/Tm:CsYb2F7@glass photothermal nanocomposite for optical security
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A single-beam NIR laser-triggered full-color upconversion tuning of a Er/Tm:CsYb2F7@glass photothermal nanocomposite for optical security

机译:单光束近红外激光触发全彩上转换调优的Er / Tm: CsYb2F7@glass光照对光学安全纳米复合材料

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摘要

The development of advanced luminescent materials is highly desirable for addressing the rising threat of forgery. However, it is challenging to achieve stable full-color upconversion (UC) tuning in the same matrix upon a single-beam light excitation so as to ensure that authentic items are irreproducible. Herein, hexagonal Er/Tm:CsYb2F7 nanocrystals (NCs) embedded inorganic glass via an in situ crystallization strategy is fabricated, which can emit blue, cyan, green, yellow, orange, red and near-infrared (NIR) UC emissions by simply modifying an incident 980 nm laser power. This UC tuning is attributed to the combination roles of the highly efficient laser-induced photothermal effect of the CsYb2F7 host and simultaneous emissions of Er and Tm activators. Importantly, the robust inorganic glass matrix endows Er/Tm:CsYb2F7 NCs with excellent water resistance and the ability to withstand high-power laser irradiation. Based on these unique characteristics, a proof-of-concept anti-counterfeiting experiment is designed. The results indicate that dynamic full-color UC luminescence patterns can be easily tuned by simply changing the power of the incident 980 nm laser. The present work not only confirms that the designed photothermal material can increase information security, but also provides a new idea for practical applications in the field of anti-counterfeiting.
机译:先进发光材料的发展是非常可取的解决不断上升的伪造的威胁。实现稳定的全彩上转换(加州大学)调优在同一个矩阵在单光束光激发,以确保真实项目是不能复制的。Er / Tm: CsYb2F7纳米晶体(nc)嵌入无机玻璃通过原位结晶策略是捏造的,可以发出蓝色,青色、绿色、黄色、橙色、红色和近红外(NIR)加州大学通过排放修改一个入射波长980纳米的激光功率。调优是归因于组合的角色高效的激光光热光谱分析CsYb2F7主机和同步的效果Er和Tm活化剂的排放。的无机玻璃基质赋予Er / Tm: CsYb2F7 nc与优秀的耐水性并且能够承受高功率激光器辐照。特点,一个概念验证防伪设计实验。结果表明,动态全彩加州大学发光模式可以很容易地调整只是改变事件的力量980海里激光。设计的光热光谱分析材料可以增加信息安全,但也提供了一个新的思想领域的实际应用防伪。

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