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Multiphoton absorption in europium(m) doped YVO4 nanoparticles

机译:掺Y YVO4纳米粒子中的多光子吸收

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We report the synthesis and physicochemical characterization of YVO4 nanocrystals doped with Eu~(3+) ions. The adopted solvothermal synthesis procedure rendered YVO4 nanoparticles with tetragonal crystal structure and rod-like morphology. The absorption and excitation spectra of the studied nanoparticles showed UV bands which were attributed to the ~1A1→ ~1T2 and ~1A, → ~1T1, electronic transitions in the vanadate group, respectively. The nonlinear optical properties of both undoped YVO4 nanocrystals and those doped with Eu~(3+) ions were studied by wide wavelength range (600-1600 nm) femtosecond Zscan measurements. The experiments revealed strong multiphoton absorption in the wavelengths around 650 and 1300 nm, within the first and second biological window. This nonlinear absorption results in multiphoton excitation of red europium emission from the nanoparticles, making them potential candidates for application as markers in nonlinear microscopy imaging techniques.
机译:我们报道了掺杂Eu〜(3+)离子的YVO4纳米晶体的合成和理化特性。所采用的溶剂热合成方法使YVO4纳米颗粒具有四方晶体结构和棒状形态。所研究的纳米粒子的吸收和激发光谱显示出紫外带,分别归因于〜1A1→〜1T2和〜1A,~~ 1T1,钒酸盐组中的电子跃迁。通过宽波长范围(600-1600 nm)飞秒Zscan测量,研究了未掺杂的YVO4纳米晶体和掺有Eu〜(3+)离子的非线性光学性质。实验表明,在第一和第二生物窗口内,在650和1300 nm附近的波长中有很强的多光子吸收。这种非线性吸收导致纳米粒子发出红photo发射的多光子激发,使其成为在非线性显微镜成像技术中用作标记的潜在候选人。

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