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Optical characterization of europium-doped indium hydroxide nanocubes obtained by Microwave-Assisted Hydrothermal method

机译:微波辅助水热法制得的掺-氢氧化铟纳米晶的光学表征

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摘要

Crystalline europium-doped indium hydroxide (In(OH)3:Eu) nanostructures were prepared by rapid and efficient Microwave-Assisted Hydrothermal (MAH) method. Nanostructures were obtained at low temperature. FE-SEM images confirm that these samples are composed of 3D nanostructures. XRD, optical diffuse reflectance and photoluminescence (PL) measurements were used to characterize the products. Emission spectra of europium-doped indium hydroxide (IH:xEu) samples under excitation (350.7 nm) presented broad band emission regarding the indium hydroxide (IH) matrix and 5D0 → 7F0, 5D0 → 7F1, 5D0 → 7F2, 5D0 → 7F3 and 5D0 → 7F4 europium transitions at 582, 596, 618, 653 and 701 nm, respectively. Relative intensities of Eu3+ emissions increased as the concentration of this ion increased from 0, 1, 2, 4 and 8 mol %, of Eu3+, but the luminescence is drastically quenched for the IH matrix.
机译:采用快速高效的微波辅助水热法制备了euro掺杂的氢氧化铟(In(OH)3:Eu)纳米结构。在低温下获得纳米结构。 FE-SEM图像证实这些样品由3D纳米结构组成。 XRD,光学漫反射率和光致发光(PL)测量用于表征产品。掺杂(的氢氧化铟(IH:xEu)样品在激发(350.7 nm)下的发射光谱显示了有关氢氧化铟(IH)基质和5D0→7F0、5D0→7F1、5D0→7F2、5D0→7F3和5D0的宽带发射→7F4 p分别在582、596、618、653和701 nm处跃迁。 Eu3 +发射的相对强度随该离子的浓度从Eu3 +的0、1、2、4和8 mol%增加而增加,但是IH基质的发光被彻底淬灭。

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