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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >White light emitting MgAl2O4:Dy3+,Eu3+ nanophosphor for multifunctional applications
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White light emitting MgAl2O4:Dy3+,Eu3+ nanophosphor for multifunctional applications

机译:白光发射MgAl2O4:DY3 +,EU3 +纳米磷,用于多功能应用

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摘要

Feeble white emission with a low Colour Rendering Index (CRI) has become the principal gridlock for the extensive commercialization of phosphor converted white LEDs (pc-WLEDs). Fusion of red, green and blue emitting rare-earth (RE) ions in a suitable host can overcome these drawbacks but the energy migration between multiple RE ions at single excitation wavelength defines the key standpoint in designing such white light emitting phosphors. Apart from the abovementioned obstacles, recently traditional optical temperature sensors based on RE ions have faced difficulties due to their low relative sensitivity and large detection error. Keeping these points in mind, in this work, a series of MgAl2O4:Dy3+,Eu3+ nanophosphors are synthesized among which 2% Dy3+,0.2% Eu3+ doped MgAl2O4 nanophosphors demonstrate strong white emission with CIE co-ordinates of (0.31, 0.33), and high quantum yield (approximate to 67%), which could be directly utilized for pc-WLED based solid state lighting devices. Detailed investigation of PL properties reveals that Eu3+ ions can be well sensitized by Dy3+ under near-ultraviolet excitation of 351 nm. Dexter's theory & Reisfeld's approximation are employed for an in-depth analysis of the inter-RE energy transfer (ET) mechanism, which signposts that the dipole-quadrupole interaction phenomenon is responsible for the ET process from Dy3+ to Eu3+. Additionally, the validated ET plays a pivotal role in demonstrating the self-referencing ratiometric temperature sensor behaviour supported by a distinct high temperature thermal quenching trend between Dy3+ and Eu3+ ions. Hence the obtained nanophosphors are highly promising for utilizing in WLED based solid state lighting and self-referencing ratiometric temperature sensor applications.
机译:具有低显色指数(CRI)微弱白色发射已成为荧光体的广泛的商业化的主要僵局转换白色LED(PC-WLED的)。在合适的宿主的红色,绿色和蓝色光稀土(RE)的离子聚变可以克服这些缺点,但在单一激发波长的多个RE离子之间的能量迁移限定在设计这样的白色发光荧光体的关键的角度来看。除了上述的障碍,基于RE离子最近传统光学温度传感器所面临的困难是由于它们的低的相对灵敏度和大的检测误差。记住这些点,在这项工作中,一系列的MgAl2O4的:Dy3 +的,Eu3 +的纳米荧光体被合成其中2%Dy3 +的,0.2%Eu3 +掺杂的MgAl2O4纳米荧光阐明用的(0.31,0.33)CIE坐标强白光发射,并高量子产率(接近67%),其可直接用于PC-WLED基于固态照明装置。 PL性质的详细调查表明,Eu3 +的离子可以被很好地Dy3 +的下的351nm的近紫外光激发致敏。德克斯特的理论&Reisfeld的近似被用于帧间-RE能量转移(ET)机制,该机制路标,该偶极 - 四极相互作用现象负责从Dy3 +的于Eu3 +的ET过程的深入分析。另外,该验证ET起着表明通过Dy3 +的和Eu3 +的离子之间有明显的高温热淬火趋势支持的自参照的比例温度传感器行为中起关键作用。因此所获得的纳米荧光体是高度希望用于在基于WLED固态照明和自参照的比例温度传感器应用利用。

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