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Orthogonal shortwave infrared emission based on rare earth nanoparticles for interference-free logical codes and bio-imaging

机译:基于稀土纳米粒子的正交短波红外发射用于无干扰逻辑代码和生物成像

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摘要

Shortwave infrared (SWIR) photoluminescence has received intense interest in many fields in recent years thanks to the advantages of its wide wavelength range and high tissue imaging ability and it is invisible to the naked eye. However, achieving orthogonal SWIR emission still remains a challenge. In the present study, synthesized NaErF4@NaLuF4 (Er@Lu) and NaYF4:Nd@NaLuF4 (Y:Nd@Lu) nanoparticles emitted atom-like SWIR emission, and the separation distance between the SWIR emission was beyond 50 nm, which permitted orthogonal SWIR signal acquirement with optical filters. Furthermore, an invisible logical code was designed by manipulating the orthogonal SWIR emission of the lanthanide fluoride nanoparticles, and was further operated by basic logical operations and applied in information encryption and anti-counterfeit fields. In addition, the emission between these two hydrophilic nanoparticles could also be separated in vivo without signal interference and the orthogonal SWIR imaging mode was achieved, which was demonstrated in a bio-imaging experiment in vivo. This demonstration extended the orthogonal SWIR emission capacity by controlling the orthogonal emission, opening new opportunities in the fields of data security, disease diagnosis and non-interference label in vivo.
机译:短波红外(SWIR)光致发光由于其宽波长范围和高组织成像能力以及肉眼不可见的优点,近年来在许多领域引起了广泛关注。但是,实现正交SWIR发射仍然是一个挑战。在本研究中,合成的NaErF4 @ NaLuF4(Er @ Lu)和NaYF4:Nd @ NaLuF4(Y:Nd @ Lu)纳米粒子发出原子状的SWIR发射,并且SWIR发射之间的分离距离超过50 nm,这是允许的使用滤光片进行正交SWIR信号采集。此外,通过操纵氟化镧纳米颗粒的正交SWIR发射设计了不可见的逻辑代码,并通过基本的逻辑运算对其进行了进一步的操作,并将其应用于信息加密和防伪领域。另外,这两个亲水性纳米颗粒之间的发射也可以在体内分离而没有信号干扰,并且实现了正交SWIR成像模式,这在体内生物成像实验中得到了证明。该演示通过控制正交发射来扩展正交SWIR发射能力,在数据安全性,疾病诊断和体内无干扰标签领域开辟了新的机遇。

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