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Water dispersible ultra-small multifunctional KGdF4:Tm~(3+,) Yb~(3+) nanoparticles with near-infrared to near-infrared upconversion

机译:具有近红外至近红外上转换的水分散性超小型多功能KGdF4:Tm〜(3+,)Yb〜(3+)纳米粒子

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摘要

Ultra-small multifunctional KGdF4:Tm~(3+),Yb~(3+) nanoparticles with near-infrared to near-infrared upconversion are synthesized. The average sizes of KGdF4:Tm~(3+) 2%, Yb~(3+) 20% core-only and KGdF4: Xm~(3+) 2%, Yb~(3+) 20%/KGdF4 core-shell nanoparticles are ~3.7 nm and ~7.4 nm, respectively, which fall within the reported optimal sizes (<10 nm) for bioimaging probes. The excitation and emission at 980 and 803 nm are favorable to deeper tissue penetration and reduced autofluorescence. The weak upconversion luminescence of the ultra-small core-only nanoparticles is overcome by the use of the core-shell approach. The magnetic mass susceptibility and magnetization of the ultra-small core-only and core-shell nanoparticles were determined, and are close to those of large nanoparticles (26 and 50 nm) used for magnetic resonance imaging and bio-separation. There is no variation in the magnetic properties with the nanoparticles' sizes between the core-only (~3.7 nm) and core-shell (~7.4 nm) nanoparticles, which differs from the size-dependent luminescence. The oleate-capped core-shell nanoparticles were further encapsulated with a PEG-phospholipid shell to endow them with dispersibility in water, which is indispensable for future biological applications.
机译:合成了近红外至近红外上转换的超小型多功能KGdF4:Tm〜(3 +),Yb〜(3+)纳米粒子。 KGdF4的平均尺寸:Tm〜(3+)2%,Yb〜(3+)仅20%内核,KGdF4:Xm〜(3+)2%,Yb〜(3+)20%/ KGdF4内核-壳纳米粒子分别为〜3.7 nm和〜7.4 nm,属于生物成像探针报道的最佳尺寸(<10 nm)。 980和803 nm处的激发和发射有利于更深的组织穿透和减少的自发荧光。通过使用核-壳方法克服了超小仅核纳米颗粒的弱上转换发光。测定了超小仅核和核壳纳米粒子的磁化率磁化强度和磁化强度,这些磁化率和磁化强度与用于磁共振成像和生物分离的大型纳米粒子(26和50 nm)接近。在仅核的纳米颗粒(〜3.7 nm)和核-壳型纳米颗粒(〜7.4 nm)之间,纳米颗粒的磁性能没有变化,这与尺寸依赖的发光不同。将油酸酯封端的核-壳纳米颗粒进一步用PEG-磷脂壳包裹,使其具有在水中的分散性,这对于将来的生物学应用是必不可少的。

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