Shahsavar Gocmen Mahla, Dulda Ayse
Department of Material Science and Nanotechnology Engineering, Yeditepe University, Turkey.
Sabanci University Nanotechnology Research and Application Center, Turkey.
Methods Appl Fluoresc. 2024 Mar 26;12(2). doi: 10.1088/2050-6120/ad326e.
Lanthanide-doped fluoride nanocrystals (NCs) exhibit excellent optical features, including upconversion and downconversion luminescence (UCL and DCL), that can be utilized in a variety of applications. In this study, we have successfully demonstrated the photoluminescence behavior of triple-doped NaYF: Yb, Er, PrNCs in the Vis-NIR region. Herein, highly monodisperse hexagonal phase NaYF: Yb, Er, Prnanocrystals in various Pr(x = 0, 0.1, 0.5, and 1 mol %) concentration with ∼22 nm diameter synthesized by thermal decomposition technique. The photoluminescence studies for all samples were performed under 980 nm laser excitation. The luminescence intensity of Erincluding blue (407 nm), green (520 and 540 nm), red (654 nm), and near-infrared (845 nm and 1530 nm) emissions was significantly quenched and Premission intensity at 1290 nm (Pr:G→H) changes irregularly upon doping with Prions. Furthermore, we performed the excitation power dependence and decay time analysis to investigate the energy transfer and upconversion mechanisms of samples. These findings indicate that the presence of praseodymium strongly reduces emission intensities due to abundant cross-relaxation channels. In addition, particle size is an efficient factor, shedding light on the influence of Pron the energy transfer and upconversion mechanisms of the fluorides.
镧系掺杂氟化物纳米晶体(NCs)具有优异的光学特性,包括上转换和下转换发光(UCL和DCL),可用于各种应用。在本研究中,我们成功展示了三掺杂NaYF:Yb、Er、Pr NCs在可见-近红外区域的光致发光行为。在此,通过热分解技术合成了不同Pr(x = 0、0.1、0.5和1 mol%)浓度、直径约22 nm的高度单分散六方相NaYF:Yb、Er、Pr纳米晶体。所有样品的光致发光研究均在980 nm激光激发下进行。铒的发光强度,包括蓝色(407 nm)、绿色(520和540 nm)、红色(654 nm)和近红外(845 nm和1530 nm)发射,显著猝灭,并且在掺杂镨离子后,1290 nm处镨的发射强度(Pr:G→H)不规则变化。此外,我们进行了激发功率依赖性和衰减时间分析,以研究样品的能量转移和上转换机制。这些发现表明,镨的存在由于丰富的交叉弛豫通道而强烈降低发射强度。此外,粒径是一个有效因素,揭示了镨对氟化物能量转移和上转换机制的影响。