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Size-dependent polarized photoluminescence from Y3Al5O_(12): Eu~(3+) single crystalline nanofiber prepared by electrospinning

机译:Y3Al5O_(12):Eu〜(3+)单晶纳米纤维电纺丝制备的尺寸依赖性偏振光致发光

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摘要

After one-step calcination of the as-prepared electrospun nanofibers, single crystalline YAG (Y3Al5O_(12)) nanofibers were successfully synthesized in situ even when the diameter reached 800 nm. X-Ray diffraction (XRD) and high-resolution transmission electron microscopy (HRTEM) results confirmed that the calcined YAG nanofibers were pure body-centered cubic (bcc) YAG phase. The crystallography of single crystalline YAG nanofibers was perfect. After doping with Eu~(3+) ions, notable polarized photoluminescence (PL) was observed from an individual YAG: Eu~(3+) nanofiber, which was predominately owing to the dielectric mismatch between the nanofiber and its surroundings. The PL polarization ratio (ρ) showed a strong diametrical dependence as a factor of ~1/R when the diameter (R) is comparable to the light wavelength. The large scale, super-long, single crystalline YAG nanofibers with notable polarized PL are promising to be applied as one dimensional nanofiber lasers, linearly polarized light resources, polarized sensors, photodetectors, etc.
机译:经过一步制备的电纺纳米纤维煅烧后,即使直径达到800 nm,单晶YAG(Y3Al5O_(12))纳米纤维也能成功就地合成。 X射线衍射(XRD)和高分辨率透射电子显微镜(HRTEM)结果证实,煅烧的YAG纳米纤维为纯体心立方(bcc)YAG相。 YAG纳米单晶纤维的晶体学是完美的。掺杂Eu〜(3+)离子后,从单个YAG:Eu〜(3+)纳米纤维中观察到明显的偏振光致发光(PL),这主要归因于纳米纤维与其周围环境之间的介电失配。当直径(R)与光波长相当时,PL偏振比(ρ)表现出很强的直径依赖性,约为〜1 / R。具有显着偏振PL的大规模,超长,单晶YAG纳米纤维有望用作一维纳米纤维激光器,线性偏振光源,偏振传感器,光电探测器等。

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