Department of Chemistry, University of Texas Rio Grande Valley, 1201 West University Drive, Edinburg, Texas 78539, USA.
Dalton Trans. 2020 Jun 14;49(22):7328-7340. doi: 10.1039/d0dt00361a. Epub 2020 Apr 8.
Luminescent materials with bright and persistent emission have been attracting significant attention from the scientific community owing to their tremendous potential in the area of bioimaging, solid state lighting, and security applications. Moreover, when they are in a nanodomain and are water dispersible, their potential for in vivo and in vitro imaging is further increased. Keeping this in mind, we have synthesized water dispersible nanorods (NRs) of ZnGeO (ZGO) and Mn-doped ZnGeO (ZGOM) using the hydrothermal method. For the ZGOM NRs, we have also optimized the dopant Mn concentration, the pH value of the reaction medium, and the precursor Zn/Ge molar ratio. The ZGO NRs emit a bright bluish white (cool-white) emission under UV irradiation which is ascribed to the various kinds of defects present in NRs. On the other hand, the ZGOM NRs display a highly bright green luminescence under UV irradiation with a quantum yield (QY) of 52%. The best emission output was observed with a dopant concentration of 2.0 mol% Mn, pH of 10.5, and Zn : Ge = 1 : 2. This fact suggests that zinc deficiency and excess of germanium lead to enhancement in emission intensity. More importantly, the undoped ZGO NRs could not display any kind of persistent luminescence, whereas the ZGOM NRs show excellent green afterglow properties (even visible with the naked eye) upon irradiation with 254 nm UV light. Such water dispersible nanocrystals with high QY and afterglow properties offer great potential for developing cost-effective and environmentally benign phosphors for multifunctional applications in society.
具有明亮持久发光的发光材料因其在生物成像、固态照明和安全应用领域的巨大潜力而引起了科学界的极大关注。此外,当它们处于纳米域且可水分散时,其在体内和体外成像的潜力进一步增加。考虑到这一点,我们使用水热法合成了水可分散的 ZnGeO(ZGO)和 Mn 掺杂的 ZnGeO(ZGOM)纳米棒(NRs)。对于 ZGOM NRs,我们还优化了掺杂剂 Mn 的浓度、反应介质的 pH 值和前驱体 Zn/Ge 的摩尔比。ZGO NRs 在紫外光照射下发出明亮的蓝白色(冷白光)发射,这归因于 NRs 中存在的各种缺陷。另一方面,ZGOM NRs 在紫外光照射下显示出高度明亮的绿色发光,量子产率(QY)为 52%。最佳发射输出是在掺杂浓度为 2.0 mol% Mn、pH 值为 10.5 和 Zn:Ge = 1:2 时观察到的。这一事实表明,锌的缺乏和锗的过剩导致发射强度增强。更重要的是,未掺杂的 ZGO NRs 不能显示任何类型的持续发光,而 ZGOM NRs 在 254nm 紫外光照射下显示出优异的绿色余辉性能(甚至肉眼可见)。这种具有高 QY 和余辉性能的水分散纳米晶体为开发具有成本效益和环境友好的多功能磷光体提供了巨大的潜力,可用于社会中的多种应用。