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Pressure-controlled synthesis of high-performance SrLiAl3N4:Eu2+ narrow-band red phosphors

机译:高性能SRLIAL3N4的压力控制合成:EU2 +窄带红磷光体

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摘要

SrLiAl _(3) N _(4) :Eu ~(2+) (SLA) phosphors have gained increasing attention worldwide due to their narrow emission bandwidth and excellent thermal stability. In this study, a series of SLA phosphors are synthesized at gas pressures ranging from 0.1 MPa to 100 MPa using gas pressure sintering and hot isostatic press systems. Upon elevating the gas pressure in synthesis, the volume of a unit cell slightly decreases while both the quantum efficiency and the particle size of SLA increase. The Eu ~(2+) /Eu ~(3+) ratio also increases with applied pressure, thereby enhancing the luminescence intensity of the phosphor materials. The presence of Li defects in the host material is evidenced by inductively coupled plasma with atomic emission spectroscopy. The mechanism of controlling the oxidation state of Eu and defect formation is proposed to elucidate the behavior of phosphors under different applied pressure levels during synthesis. Finally, the LED package shows that SLA could be a potential candidate for backlighting.
机译:SRLIAL _(3)N _(4):欧盟〜(2+)(SLA)磷光体由于其窄发射带宽和优异的热稳定性而导致全球越来越高。在该研究中,使用气体压力烧结和热等静压系统在0.1MPa至100MPa的气压下合成一系列SLA磷光体。在升高在合成中的气体压力时,单元电池的体积略微降低,同时量子效率和SLA的粒度增加。 Eu〜(2+)/ Eu〜(3+)比也随着施加压力增加,从而增强了磷光体材料的发光强度。通过具有原子发射光谱的电感耦合等离子体可以证明主体材料中Li缺陷的存在。提出了控制欧盟氧化状态和缺陷形成的机制,以阐明合成期间不同施加压力水平下的磷光体的行为。最后,LED包显示SLA可以是用于背光的潜在候选者。

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