改进和验证热重分析 (TGA),实现石墨烯相关二维材料 (GR2M) 的可靠表征和质量保证

C Pub Date : 2024-03-26 DOI:10.3390/c10020030
Dusan Losic, F. Farivar, Pei Lay Yap
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引用次数: 0

摘要

全球市场上与石墨烯相关的二维材料采用不同的生产方法制造,其性能和质量的显著差异引起了新兴的数十亿石墨烯产业的严重关注。传统的表征方法只探测单个石墨烯颗粒的特性,可能会忽略大尺度(块状)非石墨烯碳杂质的存在,为了解决这种局限性,本文提出了精炼热重分析法,作为可靠的石墨烯粉末化学表征和质量控制的补充方法。本文对样品质量和装载量、加热速率、气体环境和流速等关键实验条件进行了系统的参数调查,以确定可靠的热重测量的优化设置。通过使用工业生产的石墨烯、氧化石墨烯和还原氧化石墨烯粉末(包括常见的碳杂质)进行一系列比较特性分析,对这些优化条件进行了评估。该方法在定性和定量分析石墨烯相关材料特性方面的能力得到了证实。通过国际实验室比对研究,最终验证了优化方法,并将其纳入新标准。这种低成本、行业可承受的互补性表征方法有望加强石墨烯制成品材料的质量控制,为不断发展的石墨烯行业做出宝贵贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Refining and Validating Thermogravimetric Analysis (TGA) for Robust Characterization and Quality Assurance of Graphene-Related Two-Dimensional Materials (GR2Ms)
Graphene-related two-dimensional materials available on the global market are manufactured using various production methods, with significant variations in properties and qualities causing serious concerns for the emerging multi-billion graphene industry. To address the limitations of conventional characterization methods probing the properties of individual graphene particles which may overlook the presence of non-graphene carbon impurities at a large (bulk) scale, this paper presents the refining thermogravimetric analysis as a complementary method for the reliable chemical characterization and quality control of graphene powders. A systematic parametric investigation of key experimental conditions such as sample mass and loading, heating rate, and gas environment and flow rate is performed to identify optimized settings for reliable thermal gravimetric measurements. These optimized conditions are evaluated through a series of comparative characterizations using industrially produced graphene, graphene oxide, and reduced graphene oxide powders, including their common carbon impurities. The ability of this method to provide both qualitative and quantitative analyses for characterizing graphene-related materials is confirmed. The optimized method is finally validated through an International Laboratory Comparison study and subsequently incorporated into a new standard. This low-cost, industry-affordable, and complementary characterization method is expected to enhance the quality control of manufactured graphene materials and make a valuable contribution to the growing graphene industry.
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