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一种用于植物生长的新型高效深红色发射荧光粉AlO:Cr/YAlO:Ce

A new efficient deep-red-emission phosphor AlO:Cr/YAlO:Ce for plant growth.

作者信息

Wang Lin, Seto Takatoshi, Wang Yuhua

机构信息

Key Laboratory for Special Function Materials and Structural Design of the Ministry of Education, National & Local Joint Engineering Laboratory for Optical Conversion Materials and Technology, School of Physical Science and Technology, Lanzhou University, Lanzhou, 730000, China.

出版信息

Dalton Trans. 2021 Mar 16;50(10):3542-3549. doi: 10.1039/d0dt04244g.

Abstract

Two new types of inexpensive mixed phosphors, Al2O3:Cr3+/YAG:Ce3+ and Al2O3:Cr3+/(Ba,Sr)2SiO4:Eu2+, were designed and synthesized using a high-temperature solid-state method. The emission intensity under blue excitation was reported to be of the order of Al2O3:Cr3+/YAG:Ce3+ > Al2O3:Cr3+/(Ba,Sr)2SiO4:Eu2+ > Al2O3:Cr3+. By adding YAG:Ce3+ to Al2O3:Cr3+, the excitation spectrum of the new phosphor was changed; blue excitation corresponding to 4f → 5d transition appeared because of the good overlap between the yellow emission of YAG:Ce3+ and the yellow excitation of Al2O3:Cr3+. The emission intensity of deep red (696 nm) under excitation at 460 nm demonstrates a significant enhancement and the quantum yield increases to 1.45 times that of Al2O3:Cr3+. Moreover, the new phosphor can be excited by light in a range between 325 and 650 nm, which could be considered as the widest excitation in the visible light region of the known deep red oxide phosphors. The temperature dependency of the emission under blue excitation is unique (I150 °C/I25 °C = 84%), which is much better than that of yellow excitation and that at 400 nm. The reflection-emission spectrum recorded under white light from a Xe lamp resembling sunlight demonstrated that the new phosphor has provided a strong deep-red light. The above results indicated that the new phosphor provides a comprehensive assistance in promoting plant growth both under a combination with a blue LED chip and under the Sun.

摘要

采用高温固态法设计并合成了两种新型廉价混合荧光粉,即Al2O3:Cr3+/YAG:Ce3+和Al2O3:Cr3+/(Ba,Sr)2SiO4:Eu2+。据报道,在蓝光激发下的发射强度顺序为Al2O3:Cr3+/YAG:Ce3+ > Al2O3:Cr3+/(Ba,Sr)2SiO4:Eu2+ > Al2O3:Cr3+。通过向Al2O3:Cr3+中添加YAG:Ce3+,新型荧光粉的激发光谱发生了变化;由于YAG:Ce3+的黄色发射与Al2O3:Cr3+的黄色激发之间有良好的重叠,出现了对应于4f→5d跃迁的蓝光激发。在460nm激发下深红色(696nm)的发射强度显著增强,量子产率提高到Al2O3:Cr3+的1.45倍。此外,新型荧光粉可被325至650nm范围内的光激发,这可被认为是已知深红色氧化物荧光粉在可见光区域中最宽的激发范围。蓝光激发下发射的温度依赖性是独特的(I150℃/I25℃ = 84%),比黄色激发和400nm激发下的温度依赖性要好得多。在类似于太阳光的氙灯光下记录的反射-发射光谱表明,新型荧光粉发出了强烈的深红色光。上述结果表明,新型荧光粉在与蓝色LED芯片组合以及在阳光下都能为促进植物生长提供全面的帮助。

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