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Visualizing Nanoparticle Dissolution by Imaging Mass Spectrometry

机译:通过成像质谱可视化纳米颗粒溶解

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We demonstrate the ability to visualize nanoparticle dissolution while simultaneously providing chemical signatures that differentiate between citrate-capped silver nanoparticles (AgNPs), AgNPs forced into dissolution via exposure to UV radiation, silver nitrate (AgNO_3), and AgNO_3/citrate deposited from aqueous solutions and suspensions. We utilize recently developed inkjet printing (IJP) protocols to deposit the different solutions/suspensions as NP aggregates and soluble species, which separate onto surfaces in situ, and collect mass spectral imaging data via time-of-flight secondary ion mass spectrometry (TOF-SIMS). Resulting 2D Ag~+ chemical images provide the ability to distinguish between the different Ag-containing starting materials and, when coupled with mass spectral peak ratios, provide information-rich data sets for quick and reproducible visualization of NP-based aqueous constituents. When compared to other measurements aimed at studying NP dissolution, the IJP-TOF-SIMS approach offers valuable information that can potentially help in understanding the complex equilibria in NP-containing solutions and suspensions, including NP dissolution kinetics and extent of overall dissolution.
机译:我们展示了可视化纳米颗粒溶解的能力,同时提供了区分柠檬酸盐封端的银纳米颗粒(AgNPs),通过暴露于紫外线辐射而被迫溶解的AgNP,硝酸银(AgNO_3)和从水溶液中沉积的AgNO_3 /柠檬酸盐的化学特征。暂停。我们利用最近开发的喷墨印刷(IJP)协议将不同的溶液/悬浮液沉积为NP聚集体和可溶物质,它们分别分散在原位表面上,并通过飞行时间二次离子质谱(TOF-)收集质谱成像数据模拟人生)。所得的二维Ag〜+化学图像提供了区分不同的含Ag起始原料的能力,并且在与质谱峰比结合使用时,可提供信息丰富的数据集,可快速且可重现地显示NP基水性成分。与旨在研究NP溶解的其他测量结果进行比较时,IJP-TOF-SIMS方法可提供有价值的信息,这些信息可能有助于理解含NP的溶液和悬浮液中的复杂平衡,包括NP溶解动力学和总体溶解程度。

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