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石墨烯相关二维材料热重分析的国际实验室间比对

International Interlaboratory Comparison of Thermogravimetric Analysis of Graphene-Related Two-Dimensional Materials.

作者信息

Yap Pei Lay, Farivar Farzaneh, Jämting Åsa K, Coleman Victoria A, Gnaniah Sam, Mansfield Elisabeth, Pu Cheng, Landi Sandra Marcela, David Marcus Vinícius, Flahaut Emmanuel, Aizane Mohammed, Barnes Michael, Gallerneault Mary, Locatelli M Dominique, Jacquinot Sébastien, Slough Carlton Gray, Menzel Jörg, Schmölzer Stefan, Ren Lingling, Pollard Andrew J, Losic Dusan

机构信息

School of Chemical Engineering and Advanced Materials, The University of Adelaide, Adelaide, SA 5005, Australia.

ARC Hub for Graphene Enabled Industry Transformation, The University of Adelaide, Adelaide, SA 5005, Australia.

出版信息

Anal Chem. 2023 Mar 28;95(12):5176-5186. doi: 10.1021/acs.analchem.2c03575. Epub 2023 Mar 14.

Abstract

Research on graphene-related two-dimensional (2D) materials (GR2Ms) in recent years is strongly moving from academia to industrial sectors with many new developed products and devices on the market. Characterization and quality control of the GR2Ms and their properties are critical for growing industrial translation, which requires the development of appropriate and reliable analytical methods. These challenges are recognized by International Organization for Standardization (ISO 229) and International Electrotechnical Commission (IEC 113) committees to facilitate the development of these methods and standards which are currently in progress. Toward these efforts, the aim of this study was to perform an international interlaboratory comparison (ILC), conducted under Versailles Project on Advanced Materials and Standards (VAMAS) Technical Working Area (TWA) 41 "Graphene and Related 2D Materials" to evaluate the performance (reproducibility and confidence) of the thermogravimetric analysis (TGA) method as a potential new method for chemical characterization of GR2Ms. Three different types of representative and industrially manufactured GR2Ms samples, namely, pristine few-layer graphene (FLG), graphene oxide (GO), and reduced graphene oxide (rGO), were used and supplied to ILC participants to complete the study. The TGA method performance was evaluated by a series of measurements of selected parameters of the chemical and physical properties of these GR2Ms including the number of mass loss steps, thermal stability, temperature of maximum mass change rate () for each decomposition step, and the mass contents (%) of moisture, oxygen groups, carbon, and impurities (organic and non-combustible residue). TGA measurements determining these parameters were performed using the provided optimized TGA protocol on the same GR2Ms by 12 participants across academia, industry stakeholders, and national metrology institutes. This paper presents these results with corresponding statistical analysis showing low standard deviation and statistical conformity across all participants that confirm that the TGA method can be satisfactorily used for characterization of these parameters and the chemical characterization and quality control of GR2Ms. The common measurement uncertainty for each parameter, key contribution factors were identified with explanations and recommendations for their elimination and improvements toward their implementation for the development of the ISO/IEC standard for chemical characterization of GR2Ms.

摘要

近年来,对石墨烯相关二维(2D)材料(GR2Ms)的研究正大力从学术界转向工业领域,市场上出现了许多新开发的产品和设备。GR2Ms及其特性的表征和质量控制对于推动工业转化至关重要,这需要开发合适且可靠的分析方法。国际标准化组织(ISO 229)和国际电工委员会(IEC 113)委员会认识到了这些挑战,以促进目前正在进行的这些方法和标准的制定。为了实现这些目标,本研究的目的是在先进材料与标准凡尔赛项目(VAMAS)技术工作区(TWA)41“石墨烯及相关二维材料”下进行国际实验室间比对(ILC),以评估热重分析(TGA)方法作为一种用于GR2Ms化学表征的潜在新方法的性能(再现性和可信度)。使用了三种不同类型的具有代表性且为工业制造的GR2Ms样品,即原始少层石墨烯(FLG)、氧化石墨烯(GO)和还原氧化石墨烯(rGO),并提供给ILC参与者以完成该研究。通过对这些GR2Ms的化学和物理性质的选定参数进行一系列测量来评估TGA方法的性能,这些参数包括质量损失步骤的数量、热稳定性、每个分解步骤的最大质量变化率温度()以及水分、氧基团、碳和杂质(有机和不可燃残留物)的质量含量(%)。12名来自学术界、行业利益相关者和国家计量机构的参与者使用提供的优化TGA方案,对相同的GR2Ms进行了测定这些参数的TGA测量。本文展示了这些结果以及相应的统计分析,结果显示所有参与者的标准偏差较低且统计结果一致,这证实了TGA方法可令人满意地用于表征这些参数以及GR2Ms的化学表征和质量控制。确定了每个参数的常见测量不确定度、关键贡献因素,并给出了解释以及关于消除这些因素和改进这些因素以实施GR2Ms化学表征的ISO/IEC标准的建议。

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