Zhang Xiao-Bo, Liang Zuo-Qin, Yan Xu, Li Mao-Mao, Ye Chang-Qing, Wang Xiao-Mei, Tao Xu-Tang
School of Materials Science and Engineering, Suzhou University of Science and Technology, Suzhou, 215009, China.
State Key Laboratory of Crystal Materials, Shandong University, Jinan, 250100, China.
Phys Chem Chem Phys. 2023 May 3;25(17):12401-12408. doi: 10.1039/d3cp01127e.
Triethylamine (TEA) is an effective medium for inhibiting dye aggregation and improving the luminescence of dye-sensitized lanthanide-doped upconversion nanoparticles (UCNPs). However, excessive TEA will cause quenching of upconversion luminescence. In this paper, the possible mechanism of TEA affecting upconversion luminescence is discussed. It is found that TEA can enhance the nucleophilicity of the solvent, leading to dye shedding from the nanoparticles. Reducing the dielectric constant of the solvent can make TEA play a more positive role in upconversion luminescence and photostability of dye-sensitized UCNPs. When heptanol is selected as the solvent for CyBSO-sensitized β-NaYF:20%Yb,2%Er (UNs), TEA can increase the upconversion luminescence by 6.0 times relative to that in methanol. More importantly, the optimal content of TEA in heptanol is 3700 times more than that in methanol. Under the action of large amounts of TEA in heptanol, a novel upconversion nanoprobe for detecting ascorbic acid is developed with a limit of detection of 0.103 μM and high selectivity over potential interfering species. Meanwhile, the high concentration of TEA in heptanol can improve the photostability of CyBSO-sensitized UNs by 10.4 times, which is of paramount importance for the practical application of dye-sensitized UCNPs.
三乙胺(TEA)是一种抑制染料聚集并提高染料敏化镧系掺杂上转换纳米颗粒(UCNPs)发光的有效介质。然而,过量的TEA会导致上转换发光猝灭。本文讨论了TEA影响上转换发光的可能机制。研究发现,TEA可增强溶剂的亲核性,导致染料从纳米颗粒上脱落。降低溶剂的介电常数可使TEA在染料敏化UCNPs的上转换发光和光稳定性方面发挥更积极的作用。当选择庚醇作为CyBSO敏化的β-NaYF:20%Yb,2%Er(UNs)的溶剂时,相对于甲醇中的情况,TEA可使上转换发光增强6.0倍。更重要的是,庚醇中TEA的最佳含量比甲醇中的高3700倍。在庚醇中大量TEA的作用下,开发了一种用于检测抗坏血酸的新型上转换纳米探针,其检测限为0.103 μM,对潜在干扰物质具有高选择性。同时,庚醇中高浓度的TEA可使CyBSO敏化的UNs的光稳定性提高10.4倍,这对染料敏化UCNPs的实际应用至关重要。