扩展工具箱的简单,经济高效,自动化的方法定量纳米颗粒表面官能团电位滴定。

IF 4.6 Q1 CHEMISTRY, ANALYTICAL
ACS Measurement Science Au Pub Date : 2025-08-20 eCollection Date: 2025-10-15 DOI:10.1021/acsmeasuresciau.5c00062
Isabella Tavernaro, Philipp C Sander, Elina Andresen, Uwe Schedler, Ute Resch-Genger
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引用次数: 0

摘要

测量纳米材料表面官能团(FGs)对于设计具有可定制和可预测功能的可分散和稳定的纳米材料至关重要。FG筛选和定量对后续处理步骤、NM的长期稳定性、NM生产的质量控制和风险评估研究也起着关键作用,并使可持续和安全(r)设计概念得以实施。这就需要为广泛使用的FG寻找简单且经济有效的方法,这些方法可以实现理想的自动化,以加快FG的筛选、监测和定量。为了扩展纳米表面分析工具箱,专注于简单的方法和广泛可用的,经济高效的仪器,我们探索了一种纳米适应的pH滴定方法,具有电位和光学读数,用于测量具有代表性的商业和定制的胺化二氧化硅纳米颗粒(SiO2 NPs)上的(去)质子的FGs总数。我们逐步优化的工作流程的准确性和鲁棒性由两个实验室的几个操作员进行了评估,并通过依赖于不同信号产生原理的两种分析方法进行了交叉比较来验证方法。这包括可追溯的,化学选择性定量核磁共振波谱(qNMR)和热重分析(TGA),提供颗粒溶解释放的氨基硅烷的数量和表面涂层的总质量。电位滴定结果与先前自动荧光胺(Fluram)测定的表面氨基fg的报告特异性量的比较突出了确定表面功能化NMs的两个量的重要性。在未来,将纳米表面分析与光学测定和pH滴定相结合将简化纳米生产过程的质量控制和稳定性研究,并可以为纳米分组提供大量数据集,从而促进监管和标准化的进一步发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Expanding the Toolbox of Simple, Cost-Efficient, and Automatable Methods for Quantifying Surface Functional Groups on NanoparticlesPotentiometric Titration.

Measuring surface functional groups (FGs) on nanomaterials (NMs) is essential for designing dispersible and stable NMs with tailored and predictable functionality. FG screening and quantification also plays a critical role for subsequent processing steps, NM long-term stability, quality control of NM production, and risk assessment studies and enables the implementation of sustainable and safe-(r)-by-design concepts. This calls for simple and cost-efficient methods for broadly utilized FGs that can be ideally automated to speed up FG screening, monitoring, and quantification. To expand our NM surface analysis toolbox, focusing on simple methods and broadly available, cost-efficient instrumentation, we explored a NM-adapted pH titration method with potentiometric and optical readout for measuring the total number of (de)-protonable FGs on representatively chosen commercial and custom-made aminated silica nanoparticles (SiO2 NPs). The accuracy and robustness of our stepwise optimized workflows was assessed by several operators in two laboratories and method validation was done by cross-comparison with two analytical methods relying on different signal generation principles. This included traceable, chemo-selective quantitative nuclear magnetic resonance spectroscopy (qNMR) and thermogravimetric analysis (TGA), providing the amounts of amino silanes released by particle dissolution and the total mass of the surface coatings. A comparison of the potentiometric titration results with the reporter-specific amounts of surface amino FGs determined with the previously automated fluorescamine (Fluram) assay highlights the importance of determining both quantities for surface-functionalized NMs. In the future, combined NM surface analysis with optical assays and pH titration will simplify quality control of NM production processes and stability studies and can yield large data sets for NM grouping that facilitates further developments in regulation and standardization.

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来源期刊
ACS Measurement Science Au
ACS Measurement Science Au 化学计量学-
CiteScore
5.20
自引率
0.00%
发文量
0
期刊介绍: ACS Measurement Science Au is an open access journal that publishes experimental computational or theoretical research in all areas of chemical measurement science. Short letters comprehensive articles reviews and perspectives are welcome on topics that report on any phase of analytical operations including sampling measurement and data analysis. This includes:Chemical Reactions and SelectivityChemometrics and Data ProcessingElectrochemistryElemental and Molecular CharacterizationImagingInstrumentationMass SpectrometryMicroscale and Nanoscale systemsOmics (Genomics Proteomics Metabonomics Metabolomics and Bioinformatics)Sensors and Sensing (Biosensors Chemical Sensors Gas Sensors Intracellular Sensors Single-Molecule Sensors Cell Chips Arrays Microfluidic Devices)SeparationsSpectroscopySurface analysisPapers dealing with established methods need to offer a significantly improved original application of the method.
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