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Structural and optical properties of pekovite and maleevite phosphor for white led applications

机译:应用于白光LED的钙钛矿和马来石磷光体的结构和光学性质

摘要

Polycrystalline pekovite (SrB2Si2O8) and maleevite (BaB2Si2O8) phosphor doped with Eu and/or Dy ions of nominal composition (25-a-b)MO-25B2O3-50SiO2: aEu2O3, bDy2O3 where M = (Sr, Ba) and a, b = 1 or 0 mol% were synthesized via solid state reaction to study their structural and optical properties for white LED applications. The maleevite and pekovite phosphor were sintered at temperature of 950 and 1000 oC respectively for 5 hours in air and CO. The XRD results revealed that the incorporations of dopants caused the mean crystallite sizes to increase from 18.01 – 115.93 nm indicating improved crystallinity which is in orthorhombic structure and this was confirmed by SEM. The rare earth dopants were incorporated in the crystal and were confirmed by EDAX. FT-IR and FT-RAMAN spectra revealed the presence of borosilicate superstructure. Both danburite breathing mode along with multiple vibrational modes in FT-IR were found to be red-shifted when strontium were replaced with barium due to the larger ionic radii which increased Ba-O bond length. UV-VIS-NIR diffused reflectance spectra were collected and the optical band gaps of the samples were determined which were in the ranges 3.23 – 4.25 eV in pekovite and 3.42 – 3.7 eV in maleevite samples. Photoluminescence spectra of Eu3+ and Dy3+ ions were obtained from UV excitation which showed intense emission peaks at 483 and 575 nm from Dy3+ along with 590 and 613 nm from Eu3+ and the dopant site symmetry ratios were calculated. Combinations of blue, green and red emission from Eu3+ and Dy3+ showed its potential as a tune-able white light phosphor. Emissions at ~435 nm from Eu2+ were detected in all CO sintered phosphor and air sintered pekovite, exhibiting the unusual reduction of Eu3+ to Eu2+ in air. Overall, low cost phosphor materials which would be suitable for white LED applications were synthesized
机译:掺有标称组成为(25-ab)MO-25B2O3-50SiO2的Eu和/或Dy离子的多晶白云母(SrB2Si2O8)和马来石(BaB2Si2O8)荧光粉:aEu2O3,bDy2O3其中M =(Sr,Ba)和a,b = 1通过固态反应合成了0 mol%或0 mol%的化合物,以研究其在白色LED应用中的结构和光学性能。分别在950和1000 oC的温度下在空气和CO中烧结马来辉石和pekovite磷光体5个小时。X射线衍射结果表明,掺杂物的掺入导致平均晶粒尺寸从18.01 – 115.93 nm增大,表明结晶度有所提高。正交结构,这通过SEM证实。将稀土掺杂剂掺入晶体中,并通过EDAX确认。 FT-IR和FT-RAMAN光谱揭示了硼硅酸盐超结构的存在。当锶被钡替代时,由于较大的离子半径增加了Ba-O键的长度,因此FT-IR中的两种丹伯石呼吸模式以及多种振动模式都发生了红移。收集了UV-VIS-NIR漫反射光谱,确定了样品的光学带隙,佩科夫岩的光谱带隙在3.23 – 4.25 eV范围内,马来钙石的光谱带隙在3.42 – 3.7 eV范围内。通过紫外激发得到Eu3 +和Dy3 +离子的光致发光光谱,该光谱在Dy3 +处的483和575 nm处以及Eu3 +处的590和613 nm处显示出强烈的发射峰,并计算了掺杂位点对称比。 Eu3 +和Dy3 +发出的蓝,绿和红光组合显示出其作为可调谐白光磷光体的潜力。在所有CO烧结的磷光体和空气烧结的钙钛矿中检测到Eu2 +在〜435 nm处的发射,表现出空气中Eu3 +还原为Eu2 +的异常现象。总体而言,合成了适用于白光LED应用的低成本磷光体材料

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    Leow Ting Qiao;

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  • 年度 2015
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