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Designing Upconversion Nanocrystals Capable of 745 nm Sensitization and 803 nm Emission for Deep-Tissue Imaging

机译:设计能够实现 745 nm 敏化和 803 nm 发射的上转换纳米晶体,用于深组织成像

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摘要

A crystal design strategy is described that generates hexagonal-phased NaYF4:Nd/Yb@NaYF4:Yb/Tm luminescent nanocrystals with the ability to emit light at 803 nm when illuminated at 745 nm. This is accomplished by taking advantage of the large absorption cross-section of Nd3+ between 720 and 760 nm plus efficient spatial energy transfer and migration through Nd3+ -> Yb3+ -> Yb3+ -> Tm3+. Mechanistic investigations suggest that a cascaded two-photon energy transfer upconversion process underlies the emission mechanism. This protocol enables deep-tissue imaging to be achieved while mitigating the attenuation effect associated with the visible emission and the overheating constraint imposed by conventional 980 nm excitation.
机译:描述了一种晶体设计策略,该策略可生成六方相NaYF4:Nd/Yb@NaYF4:Yb/Tm发光纳米晶体,该纳米晶体在745 nm处照射时能够在803 nm处发光。这是通过利用 Nd3+ 在 720 和 760 nm 之间的大吸收截面以及通过 Nd3+ -> Yb3+ -> Yb3+ -> Tm3+ 的高效空间能量转移和迁移来实现的。机理研究表明,级联的双光子能量转移上变频过程是发射机制的基础。该协议能够实现深层组织成像,同时减轻与可见光发射相关的衰减效应和传统 980 nm 激发施加的过热限制。

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