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Simultaneous realization of phase/size manipulation, upconversion luminescence enhancement, and blood vessel imaging in multifunctional nanoprobes through transition metal Mn2+ doping

机译:通过过渡金属Mn2 +掺杂同时实现多功能纳米探针的相/尺寸控制,上转换发光增强和血管成像

摘要

A strategy is demonstrated for simultaneous phase/size manipulation, multicolor tuning, and remarkably enhanced upconversion luminescence (UCL), particularly in red emission bands in fixed formulae of general lanthanide-doped upconverting nanoparticles (UCNPs), namely NaLnF4:Yb/Er (Ln: Lu, Gd, Yb), simply through transition metal Mn2+-doping. The addition of different Mn2+ dopant contents in NaLnF4:Yb/Er system favors the crystal structure changing from hexagonal (β) phase to cubic (α) phase, and the crystal size of UCNPs can be effectively controlled. Moreover, the UCL can be tuned from green through yellow and to dominant red emissions under the excitation of 980 nm laser. Interestingly, a large enhancement in overall UCL spectra of Mn2+ doped UCNPs (∼59.1 times for NaLuF4 host, ∼39.3 times for NaYbF4 host compared to the UCNPs without Mn2+ doping) is observed, mainly due to remarkably enhanced luminescence in the red band. The obtained result greatly benefits in vitro and in vivo upconversion bioimaging with highly sensitive and deeper tissue penetration. To prove the application, a select sample of nanocrystal is used as an optical probe for in vitro cell and in vivo bioimaging to verify the merits of high contrast, deeper tissue penetration, and the absence of autofluorescence. Furthermore, the blood vessel of lung of a nude mouse with the injection of Mn2+-doped NaLuF4: Yb/Er UCNPs can be readily visualized using X-ray imaging. Therefore, the Mn2+ doping method provides a new strategy for phase/size control, multicolor tuning, and remarkable enhancement of UCL dominated by red emission, which will impact on the field of bioimaging based on UCNP nanoprobes.
机译:展示了一种可同时进行相/尺寸控制,多色调整和显着增强的上转换发光(UCL)的策略,尤其是在固定镧系元素掺杂的普通镧系上转换纳米颗粒(UCNP)的红色发射带中,即NaLnF4:Yb / Er(Ln :Lu,Gd,Yb),只需通过过渡金属Mn2 +掺杂即可。在NaLnF4:Yb / Er系统中添加不同的Mn2 +掺杂剂含量有利于晶体结构从六方(β)相变为立方(α)相,并且可以有效地控制UCNPs的晶体尺寸。此外,在980 nm激光的激发下,UCL可以从绿色变为黄色,并变为主要的红色发射。有趣的是,观察到Mn2 +掺杂的UCNPs的整体UCL光谱有很大增强(与未掺杂Mn2 +的UCNPs相比,NaLuF4宿主约为59.1倍,NaYbF4宿主约为39.3倍),这主要是由于红色波段的发光显着增强。所获得的结果极大地有益于具有高度敏感和更深层组织穿透力的体外和体内上转换生物成像。为了证明其应用,将选定的纳米晶体样品用作体外细胞和体内生物成像的光学探针,以验证高对比度,更深的组织穿透性和不存在自发荧光的优点。此外,注射了Mn2 +的NaLuF4:Yb / Er UCNPs注射后,裸鼠的肺血管可以使用X射线成像轻松观察。因此,Mn2 +掺杂方法为相位/尺寸控制,多色调整和显着增强以红色发射为主的UCL提供了新的策略,这将影响基于UCNP纳米探针的生物成像领域。

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