CAS Key Laboratory of Separation Sciences for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian, 116023, People's Republic of China.
School of Optoelectronic Engineering and Instrumentation Science, Dalian University of Technology, No. 2 Linggong Road, Ganjingzi District, Dalian, 116024, People's Republic of China.
Anal Chem. 2020 Jul 7;92(13):8680-8684. doi: 10.1021/acs.analchem.0c01180. Epub 2020 Jun 22.
A miniature laser-induced fluorescence (mLIF) detector utilizing a novel spherical dichroic reflector (SDR), an unconventional long working distance high magnification objective, an uncommon broadband emission-matched excitation filter pair, and a silicon-based photodiode detector assembly instead of a photomultiplier tube was developed and evaluated. The detection cell was placed at the spherical center of the SDR instead of the regular focus, yielding a 1.8× signal-to-noise ratio (SNR) improvement. Different from previous works, the use of a 40× objective with a long working distance of 5.38 mm and a broadband BP 527-70 nm emission filter with matched BP 450-30 nm excitation filter improved SNR to 4.6× and 1.9×, respectively. By flow injection analysis (FIA) evaluation, the limit of detection (LOD; 3σ method) for fluorescein sodium was 1.5 × 10 M or 8.9 fluorescein molecules in 98 pL detection volume, which was the lowest level of LIFs evaluated by FIA mode. The analysis of three kinds of amino acids with LODs at sub pM to fM level (the lowest levels, hundreds of times lower than previous works using normal capillary) demonstrated the potential of the mLIF in ultratrace analysis of biological and environmental samples, including low copy molecules in a single cell.
利用新型球形二向色镜 (SDR)、非常规长工作距离高倍率物镜、不常见的宽带发射匹配激发滤光对以及硅基光电二极管探测器组件而非光电倍增管,开发并评估了一种微型激光诱导荧光 (mLIF) 检测器。检测池被放置在 SDR 的球形中心而不是常规焦点,从而将信噪比 (SNR) 提高了 1.8 倍。与以前的工作不同,使用具有 5.38mm 长工作距离的 40×物镜和宽带 BP 527-70nm 发射滤光片与匹配的 BP 450-30nm 激发滤光片,SNR 分别提高到 4.6 倍和 1.9 倍。通过流动注射分析 (FIA) 评估,荧光素钠的检测限 (LOD; 3σ 法) 为 1.5×10^-7 M 或 98pL 检测体积中的 8.9 个荧光素分子,这是通过 FIA 模式评估的最低 LIF 水平。对三种氨基酸的分析表明,其 LOD 达到亚皮摩尔至飞摩尔水平(最低水平,比以前使用普通毛细管的工作低数百倍),这表明 mLIF 具有在生物和环境样品中超痕量分析的潜力,包括单细胞中的低拷贝分子。