Park Sangwook, Ko Minji, Kim Hyeng Jin, Lee Keyong Nam, Do Young Rag
Department of Chemistry, Kookmin University, Seoul 02707, Republic of Korea.
ACS Omega. 2022 Jul 12;7(29):25031-25038. doi: 10.1021/acsomega.2c00943. eCollection 2022 Jul 26.
Green (G) and red (R) light-emitting materials, such as quantum dots, perovskite nanocrystals, and inorganic phosphor powders, owing to their excellent optical characteristics, have attracted researchers' attention as color-conversion materials for lighting and display applications. However, these materials contain environmentally harmful elements, such as Pb or Cd, and/or they are synthesized using environmentally harmful synthetic approaches and conditions, involving the use of organic solvents, high pressure, high temperature, harsh atmosphere, and long reaction time. In this study, as an eco-friendly synthetic approach to synthesize lead-free CsMnBr G powder phosphor, we suggest an evaporative crystallization process of aqueous reactant solution. This synthetic process does not use toxic elements or solvents and the crystallization process utilizes only low reaction temperature and short reaction time under air atmosphere conditions. We successfully synthesized CsMnBr green powder phosphor, with excellent optical properties, by evaporative heating of a 200 nm syringe-filtered solution at 150 °C for 2 h. The synthesized CsMnBr phosphors have a photoluminescence quantum yield of 66.3%, a peak wavelength of 520 nm, a narrow bandwidth of 38 nm, and a photoluminescence decay time of 0.34 ms under blue excitation. This phosphor is expected to be a useful alternative G-emitting material that can compete with commercial green quantum dots, perovskite nanocrystals, or inorganic phosphors.
绿色(G)和红色(R)发光材料,如量子点、钙钛矿纳米晶体和无机磷光体粉末,由于其优异的光学特性,作为照明和显示应用的颜色转换材料已引起研究人员的关注。然而,这些材料含有对环境有害的元素,如铅或镉,和/或它们是使用对环境有害的合成方法和条件合成的,包括使用有机溶剂、高压、高温、恶劣气氛和较长的反应时间。在本研究中,作为一种合成无铅CsMnBr绿色粉末磷光体的环保合成方法,我们提出了一种反应物水溶液的蒸发结晶过程。这种合成过程不使用有毒元素或溶剂,并且结晶过程仅在空气气氛条件下利用较低的反应温度和较短的反应时间。我们通过在150℃下对200nm注射器过滤溶液进行蒸发加热2小时,成功合成了具有优异光学性能的CsMnBr绿色粉末磷光体。合成的CsMnBr磷光体在蓝色激发下的光致发光量子产率为66.3%,峰值波长为520nm,带宽为38nm,光致发光衰减时间为0.34ms。这种磷光体有望成为一种有用的替代绿色发光材料,能够与商业绿色量子点、钙钛矿纳米晶体或无机磷光体竞争。