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Defect-assisted dynamic multicolor modulation in KLu3F10:Tb crystals for anti-counterfeiting

机译:KLu3F10:Tb晶体缺陷辅助动态多色调制防伪

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摘要

Excitation-dependent dynamic multicolor luminescent materials show potential for promising applications in the field of anti-counterfeiting. However, for most ultraviolet (UV)-excited lanthanide-doped materials, more than two types of activators are incorporated to realize multicolors. In this study, for the first time, KLu3F10:Tb crystals were used to realize excitation-dependent multicolor emissions. The morphology was modified by tuning the surface-coated citric acid (CA) content. During hydrothermal reactions, fluorine vacancy defects are formed on the crystal surface, and carboxyl groups (–COOH) are coated on the crystal surface to maintain the charge balance. Under 254 nm UV excitation, typical Tb3+ green emissions were observed, while a strong broadband emission peaking at 442 nm appeared in addition to these Tb3+ emissions under 365 nm excitation. The energy transfer (ET) process between the defect state and Tb3+ is clarified. This work may promote the development of single-type activator-doped multicolor luminescent materials for high-level anti-counterfeiting.
机译:Excitation-dependent动态多色发光材料的潜力领域的应用前景防伪。紫外线(UV)兴奋lanthanide-doped材料,以上两种类型的催化剂实现多色。研究中,首次KLu3F10:结核病晶体被用来实现excitation-dependent多色的排放。通过调优surface-coated柠檬酸(CA)内容。空位缺陷形成的晶体表面和羧基组(羧基)涂晶体表面的维护费用平衡。绿色排放被观察到,而强烈在442海里出现在宽带发射峰值除了这些Tb3 +排放在365海里激发。之间的缺陷状态和Tb3 +澄清。这项工作可以促进发展单一类型activator-doped多色发光材料的高层防伪。

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