Key Laboratory of Luminescent and Real-Time Analytical Chemistry (Southwest University), Ministry of Education, College of Chemistry and Chemical Engineering , Southwest University , Chongqing 400715 , P. R. China.
College of Chemistry and Chemical Engineering , Yangtze Normal University , Chongqing 408100 , P. R. China.
Anal Chem. 2019 Feb 19;91(4):3002-3008. doi: 10.1021/acs.analchem.8b05285. Epub 2019 Feb 8.
Investigating a reaction that is inconspicuously weak, slow, or coexists with other fast reactions is interesting since that can supply a capability to find new reactions or explore indecisive mechanisms, but the strategies for the investigations are still greatly limited. Herein, we apply the strategy of "finding from the data" to discuss inconspicuous reactions through improving the confidence level of detected signals. In dark-field microscopy (DFM) imaging analysis, plasmonic nanoprobes, such as silver nanoparticles (AgNPs), have been applied at a single nanoparticle level with high sensitivity, but correspondingly, the deviations caused by instrumental and operational errors are inevitable. Thus, silver shell-isolated nanoparticles (AgSHINs) as an internal reference (IR) are introduced to calibrate the scattering signals of AgNPs probe during the reactions. Two calibration factors, α and β, are used to calibrate the plasmonic scattering intensity and RGB values of the AgNPs probe of the DFM images, respectively, making the confidence level of the DFM imaging analysis greatly improved and, thus, supplying a possibility to monitor inconspicuously weak or slow reactions. As a proof of concept, the inconspicuous amalgamation of AgNP probes bathed in dilute solution of mercury higher than 1.0 × 10 mol/L was successfully monitored. In the same way, we identified the very weak oxidation process of AgNP probes by dissolved oxygen in water. These successful monitorings of inconspicuous weak or slow reactions, which might be possible to be regarded as detection deviations mistakenly, show that the use of AgSHINs as an IR can provide a precise method to discern or discover inconspicuous slow reactions in nature through the DFM imaging analysis.
研究那些不明显的、缓慢的或与其他快速反应共存的反应是很有趣的,因为这可以提供发现新反应或探索不确定机制的能力,但调查的策略仍然受到很大的限制。在这里,我们应用“从数据中寻找”的策略,通过提高检测信号的置信水平来讨论不明显的反应。在暗场显微镜(DFM)成像分析中,等离子体纳米探针,如银纳米颗粒(AgNPs),已经在单个纳米颗粒水平上以高灵敏度应用,但是相应地,仪器和操作误差引起的偏差是不可避免的。因此,引入银壳隔离纳米颗粒(AgSHINs)作为内部参考(IR)来校准反应过程中 AgNP 探针的散射信号。使用两个校准因子α和β分别校准 DFM 图像中 AgNP 探针的等离子体散射强度和 RGB 值,从而大大提高了 DFM 成像分析的置信水平,为监测不明显的弱或缓慢反应提供了可能性。作为一个概念验证,成功监测了在浓度高于 1.0×10-5mol/L 的稀汞溶液中 AgNP 探针的不明显的融合。同样,我们通过水中溶解氧识别了 AgNP 探针的非常微弱的氧化过程。这些对不明显的弱或缓慢反应的成功监测,这些反应可能被误认为是检测偏差,表明使用 AgSHINs 作为 IR 可以通过 DFM 成像分析提供一种精确的方法来识别或发现自然界中不明显的缓慢反应。