Zhong Jiasong, Xu Wei, Chen Qingli, Yuan Shuo, Ji Zhengguo, Chen Daqin
College of Materials and Environmental Engineering, Hangzhou Dianzi University, Hangzhou 310018, China.
Dalton Trans. 2017 Aug 14;46(30):9959-9968. doi: 10.1039/c7dt02090b. Epub 2017 Jul 20.
Currently, the shortage of red components and easy aging of organic silicone still remain challenges for high-power phosphor-converted warm white light-emitting diodes (w-LEDs). Aiming to alleviate these issues, phosphor-in-glass (PiG), fabricated by co-sintering red- and yellow-emitting phosphors and low-melting glass, has been regarded as a promising color converter for w-LEDs. In this study, a Li,Mn co-doped SrMgAlO red phosphor was synthesized via a conventional solid-state reaction. The as-prepared phosphor exhibits a deep red emission, ascribed to Mn:E→A spin-forbidden transition in the range of 600-700 nm with a narrow-band full width at half maximum of 55 nm, and provides an ideal broadband excitation extending from 250 to 530 nm. Impressively, the Li additive used as charge compensation was beneficial to enhance the Mn luminescence by allowing more Mn to replace Al. Furthermore, the developed SrMgAlO:Mn,Li red phosphor and commercial YAG:Ce yellow phosphor co-doped inorganic PiG were successfully fabricated as color converters to substitute organic silicone. The w-LED was fabricated by combining an InGaN blue LED chip with a PiG plate. Importantly, the constructed w-LEDs exhibited superior optical performance and tuned chromaticity feature with the correlated color temperature evolved from bluish cool white (6903 K) to yellowish warm white (3717 K), and the color rendering index increased from 69.4 to 85.5, meeting the requirements for indoor lighting.
目前,红色组件的短缺以及有机硅的易老化问题仍然是高功率磷光转换暖白色发光二极管(w-LED)面临的挑战。为了缓解这些问题,通过共烧结红色和黄色发射磷光体以及低熔点玻璃制成的玻璃中磷光体(PiG)被视为一种有前途的w-LED颜色转换器。在本研究中,通过传统的固态反应合成了Li、Mn共掺杂的SrMgAlO红色磷光体。所制备的磷光体呈现深红色发射,这归因于600-700nm范围内的Mn:E→A自旋禁戒跃迁,半高宽窄带为55nm,并提供了从250到530nm的理想宽带激发。令人印象深刻的是,用作电荷补偿的Li添加剂通过允许更多的Mn取代Al,有利于增强Mn的发光。此外,成功制备了开发的SrMgAlO:Mn,Li红色磷光体和商业YAG:Ce黄色磷光体共掺杂的无机PiG作为颜色转换器来替代有机硅。通过将InGaN蓝色LED芯片与PiG板组合来制造w-LED。重要的是,构建的w-LED表现出优异的光学性能和可调色度特性,相关色温从蓝白色冷白(6903K)演变为黄白色暖白(3717K),显色指数从69.4提高到85.5,满足室内照明要求。