Characterization of Nanoparticles in Ethanolic Suspension Using Single Particle Inductively Coupled Plasma Mass Spectrometry: Application for Cementitious Systems

IF 3.7 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY ACS Omega Pub Date : 2024-07-02 DOI:10.1021/acsomega.4c01196
Steffen Hellmann, Teba Gil-Díaz, Marcus Böhm, Dirk Merten, Sylvain Grangeon, Fabienne Warmont, Sophie Unbehau, Thomas Sowoidnich, Thorsten Schäfer
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Abstract

Single particle inductively coupled plasma mass spectrometry (spICP-MS) is a well-established technique to characterize the size, particle number concentration (PNC), and elemental composition of engineered nanoparticles (NPs) and colloids in aqueous suspensions. However, a method capable of directly analyzing water-sensitive or highly reactive NPs in alcoholic suspension has not been reported yet. Here, we present a novel spICP-MS method for characterizing the main cement hydration product, i.e., calcium-silicate-hydrate (C-S-H) NPs, in ethanolic suspensions, responsible for cement strength. The method viability was tested on a wide range of NP compositions and sizes (i.e., from Au, SiO2, and Fe3O4 NP certified reference materials (CRMs) to synthetic C-S-H phases with known Ca/Si ratios and industrial cement hardening accelerators, X-Seed 100/500). Method validation includes comparisons to nanoparticle tracking analysis (NTA) and transmission/scanning electron microscopy (TEM/SEM). Results show that size distributions from spICP-MS were in good agreement with TEM and NTA for CRMs ≥ 51 nm and the synthetic C-S-H phases. The X-Seed samples showed significant differences in NP sizes depending on the elemental composition, i.e. CaO and SiO2 NPs were bigger than Al2O3 NPs. PNC via spICP-MS was successfully validated with an accuracy of 1 order of magnitude for CRMs and C-S-H phases. The spICP-MS Ca/Si ratios matched known ratios from synthetic C-S-H phases (0.6, 0.8, and 1.0). Overall, our method is applicable for the direct and element-specific quantification of fast nucleation and/or mineral formation processes characterizing NPs (ca. 50–1000 nm) in alcoholic suspensions.

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利用单颗粒电感耦合等离子体质谱法表征乙醇悬浮液中的纳米颗粒:在水泥基体系中的应用
单颗粒电感耦合等离子体质谱法(spICP-MS)是表征水悬浮液中工程纳米颗粒(NPs)和胶体的粒度、粒数浓度(PNC)和元素组成的成熟技术。然而,能够直接分析酒精悬浮液中水敏感或高活性 NPs 的方法尚未见报道。在此,我们提出了一种新型 spICP-MS 方法,用于表征乙醇悬浮液中负责水泥强度的主要水泥水化产物,即硅酸钙水合物(C-S-H)NPs。该方法的可行性在多种 NP 成分和尺寸上进行了测试(即从 Au、SiO2 和 Fe3O4 NP 认证参考材料(CRMs)到已知 Ca/Si 比率的合成 C-S-H 相和工业水泥硬化促进剂 X-Seed 100/500)。方法验证包括与纳米粒子跟踪分析 (NTA) 和透射/扫描电子显微镜 (TEM/SEM) 进行比较。结果表明,对于 CRM ≥ 51 nm 和合成的 C-S-H 相,spICP-MS 的粒度分布与 TEM 和 NTA 非常一致。X-Seed 样品的 NP 大小因元素组成不同而有显著差异,即 CaO 和 SiO2 NP 大于 Al2O3 NP。通过 spICP-MS 进行的 PNC 成功验证了 CRMs 和 C-S-H 相的精确度为 1 个数量级。spICP-MS 的 Ca/Si 比率与合成 C-S-H 相的已知比率(0.6、0.8 和 1.0)相吻合。总之,我们的方法适用于直接和特异性地量化酒精悬浮液中 NPs(约 50-1000 nm)的快速成核和/或矿物形成过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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