Tuyet Doan Thi, Hong Quan Vu Thi, Bondzior Bartosz, Dereń Przemysław Jacek, Velpula Ravi Teja, Trung Nguyen Hieu Pham, Tuyen Luu Anh, Hung Nguyen Quang, Nguyen Hoang-Duy
Opt Express. 2020 Aug 31;28(18):26189-26199. doi: 10.1364/OE.400848.
In this study, a novel nanostructure of fluoride red emitting phosphor is synthesized via soft templates. KSiF:Mn nanocrystals in the range of 3-5 nm diameter are found inside the porous KSiF:Mn nanoparticle hosts, forming unique dots-in-nanoparticles (d-NPs) structures with controlled optical properties. The porous KSiF:Mn d-NPs exhibit a sharp and deep red emission with an excellent quantum yield of ∼95.9%, and ultra-high color purity with the corresponding x and y in the CIE chromaticity coordinates are 0.7102 and 0.2870, respectively. Moreover, this nanophosphor possesses good thermal stability in range of 300 K-500 K, under light excitation of 455 nm. The KSiF:Mn d-NPs are covered onto a surface of 100×100 µm blue-yellow InGaN nanowire light-emitting diode (LED) to make warm white LEDs (WLEDs). The fabricated WLEDs present an excellent color rendering index of ∼95.4 and a low correlated color temperature of ∼3649 K. Porous KSiF:Mn d-NPs are suggested as a potential red component for high color quality micro WLED applications.
在本研究中,通过软模板合成了一种新型的发红光氟化物纳米结构。在多孔KSiF:Mn纳米颗粒主体内部发现了直径在3 - 5 nm范围内的KSiF:Mn纳米晶体,形成了具有可控光学性质的独特的纳米颗粒内量子点(d-NPs)结构。多孔KSiF:Mn d-NPs呈现出尖锐的深红色发射,量子产率约为95.9%,色纯度超高,在CIE色度坐标中相应的x和y分别为0.7102和0.2870。此外,在455 nm光激发下,这种纳米磷光体在300 K - 500 K范围内具有良好的热稳定性。将KSiF:Mn d-NPs覆盖在100×100 µm的蓝黄InGaN纳米线发光二极管(LED)表面,制成暖白色发光二极管(WLED)。所制备的WLED呈现出约95.4的优异显色指数和约3649 K的低相关色温。多孔KSiF:Mn d-NPs被认为是用于高色质微型WLED应用的潜在红色组分。