Nakamura Daisuke, Takahashi Naoko
Toyota Central R&D Laboratories, Inc., Nagakute, Aichi 480-1192, Japan.
Langmuir. 2024 Jul 23;40(29):14823-14837. doi: 10.1021/acs.langmuir.4c00641. Epub 2024 Jul 15.
This study assessed the dispersion stability of industrial carbide/oxide powders that have mosaic surfaces comprised of multiple surface ligands. A large number (∼50) of probe liquids were used with an aim to effectively explain the data within the Hansen solubility parameter (HSP) framework. The proposed log-fit method, complemented by multi-HSP analysis featuring harmonic-mean-mixing HSPs, significantly improved the fit to experimental results for various mosaic-surface powders composed of complex surface ligands. X-ray photoelectron spectroscopy and thermal desorption spectroscopy analyses were employed synergistically to decipher the surface ligands of these mosaic-surface powders, which facilitated credible identification and quantification of the surface ligands. These results are in good agreement with the surface ligands and their coverage as determined by the multi-HSP analysis. Consequently, when it comes to characterizing powder surfaces, dispersion stability measurements paired with multi-HSP analysis are superior to conventional XPS and TDS analyses in terms of both topmost surface sensitivity and practicality.
本研究评估了具有由多种表面配体组成的镶嵌表面的工业碳化物/氧化物粉末的分散稳定性。使用了大量(约50种)探针液体,旨在有效地在汉森溶解度参数(HSP)框架内解释数据。所提出的对数拟合方法,辅以具有调和平均混合HSP的多HSP分析,显著改善了对由复杂表面配体组成的各种镶嵌表面粉末的实验结果的拟合。协同采用X射线光电子能谱和热脱附光谱分析来解析这些镶嵌表面粉末的表面配体,这有助于对表面配体进行可靠的鉴定和定量。这些结果与通过多HSP分析确定的表面配体及其覆盖率高度一致。因此,在表征粉末表面时,与多HSP分析相结合的分散稳定性测量在最表面灵敏度和实用性方面均优于传统的XPS和TDS分析。