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Emission stability and reversibility of upconversion nanocrystals

机译:上转换纳米晶体的发射稳定性和可逆性

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Rare-earth doped upconversion nanocrystals have emerged as a novel class of luminescent probes for biomedical applications. The knowledge about their optical stability in aqueous solution under different pH and temperature conditions has not been comprehensively explored. Here we conduct a systematic investigation and report the emission stability and reversibility of typical NaYF4:Yb3+,Er3+ nanocrystals and their core-shell nanostructures in aqueous solution at different temperatures and with different pH values. These nanocrystals show reversible luminescence response to temperature changes, while low pH permanently quenches their luminescence. With the addition of inert shells, with thicknesses ranging from 1.5 nm to 8 nm, the emission stability and reversibility change significantly. Thicker inert shells not only lead to a significant enhancement in the emission intensity but also stabilize its optical responses which become less affected by temperature variations and pH conditions. This study suggests that upconversion nanocrystal-based sensitive temperature and pH sensors do not generally benefit from the core-shell structure usually recommended for enhanced upconversion luminescence.
机译:稀土掺杂的上转换纳米晶体已经成为用于生物医学应用的新型发光探针。尚未全面探索其在水溶液中在不同pH和温度条件下的光学稳定性的知识。在这里,我们进行了系统的研究,并报告了在不同温度和不同pH值下,典型的NaYF4:Yb3 +,Er3 +纳米晶体及其核-壳纳米结构在水溶液中的发射稳定性和可逆性。这些纳米晶体显示出对温度变化的可逆发光响应,而低pH值则永久性地淬灭了它们的发光。添加厚度为1.5 nm至8 nm的惰性壳后,发射稳定性和可逆性会发生显着变化。较厚的惰性壳层不仅会导致发射强度显着增强,而且还会稳定其光学响应,而光学响应受温度变化和pH条件的影响较小。这项研究表明,基于上转换纳米晶体的敏感温度和pH传感器通常不能从通常建议用于增强上转换发光的核壳结构中受益。

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