Wang Tao, Liao Chuan, Jiang Zike, Wang Jing, Ma Yanyan, Lin Haitao, Zhang Yimeng, Lv Hongmin, Zhang Xiaonan, Hu Yimeng, Yang Yingdong, Zhou Guangjun
Institute of Oceanographic Instrumentation, Qilu University of Technology (Shandong Academy of Sciences), Shandong Provincial Key Laboratory of Marine Monitoring Instrument Equipment Technology, National Engineering and Technological Research Center of Marine Monitoring Equipment, Qingdao 266061, PR China.
State Key Laboratory of Crystal Materials, Shandong University, Jinan, 250100, PR China.
Talanta. 2024 Jan 1;266(Pt 1):125041. doi: 10.1016/j.talanta.2023.125041. Epub 2023 Aug 5.
Endowing fluorescent pH sensors with large Stokes shifts promises to resolve interferential background fluorescence in practice, and yet few such method has been reported, owing to lack of luminescent materials with large Stokes shifts used in fluorescent sensors. Herein, we elaborately designed NaGdF:Ce@NaGdF:Nd@NaYF:Eu core-double shells (CDS) lanthanide-doped fluoride nanoparticles (LFNPs), employing Gd-mediated energy migration and interfacial energy transfer to realize intense red and NIR emissions under 254 nm irradiation, and pseudo-Stokes shifts of which reached up to striking 361 nm and 610 nm, respectively. The CDS LFNPs collaborated with absorption-based pH indicator bromocresol green to from a novel fluorescent sensor film, and employing low-cost dual chip RGB-NIR camera to precisely record luminescence signals. On the basis of inner-filter effects, this senor system enabled accurate ratiometric read-out of pH value ranging from 5 to 6 (pK ± 0.5), according to intensity ratios of pH-sensitive red emissions and referenced NIR emissions, avoiding common errors (e.g., fluctuant light sources). Notably, the large pseudo-Stokes shifts allowed red and NIR emissions far from the interfering background fluorescence possessing relatively small Stokes shifts, ensuring elevated signal-to-noise ratio and accurate pH determination. Therefore, the devised pH sensor system based on the CDS LFNPs exhibited sufficient accuracy in autofluorescent real samples (e.g., algae, serum), revealing a novel way of employing large pseudo-Stokes shifts to realize the background-free pH measurement and 2D imaging.
赋予荧光pH传感器大斯托克斯位移有望在实际中解决干扰性背景荧光问题,然而由于荧光传感器中缺乏具有大斯托克斯位移的发光材料,鲜有此类方法被报道。在此,我们精心设计了NaGdF:Ce@NaGdF:Nd@NaYF:Eu核-双壳层(CDS)镧系掺杂氟化物纳米颗粒(LFNPs),利用Gd介导的能量迁移和界面能量转移,在254 nm辐照下实现强烈的红色和近红外发射,其伪斯托克斯位移分别高达惊人的361 nm和6