Zhu Wenliang, Okada Kohei, Hoshida Naoki, Yoshida Yumi, Martucci Alessandro, Zhu Jiliang, Marin Elia, Pezzotti Giuseppe
Ceramic Physics Laboratory, Kyoto Institute of Technology, Sakyo-ku, Matsugasaki, 606-8585 Kyoto, Japan.
Molecular Chemistry and Engineering, Kyoto Institute of Technology, Sakyo-ku, Matsugasaki, 606-8585 Kyoto, Japan.
ACS Omega. 2023 Apr 18;8(17):14944-14951. doi: 10.1021/acsomega.2c06857. eCollection 2023 May 2.
In this paper, Raman and X-ray photoelectron spectroscopies were applied to analyze compositional and structural variations of the generated activated carbon (AC), as induced by changing carbonate source in three different types of systems, PVDF/MCO (M = Li, Na, and K). According to the variations of / and sp/sp ratios, a strong dependence of the AC structure on the type and content of the initial carbonate was found, determined by practical dehydrofluorination reactions associated with oxygen incorporation in AC and side reactions, because of the property variation induced by the difference in the cation of the carbonate sources. This procedure clarified the process of PVDF dehydrofluorination and the formation of activated carbon, which helps to optimize the material performance of the percolative composite for flexible energy storage applications.
在本文中,拉曼光谱和X射线光电子能谱被用于分析在三种不同类型的体系PVDF/MCO(M = Li、Na和K)中,通过改变碳酸盐源所产生的活性炭(AC)的组成和结构变化。根据I_D/I_G和sp²/sp³比率的变化,发现AC结构强烈依赖于初始碳酸盐的类型和含量,这是由与AC中氧掺入相关的实际脱氟化氢反应和副反应所决定的,这是由于碳酸盐源阳离子差异引起的性质变化所致。该过程阐明了PVDF脱氟化氢过程和活性炭的形成,这有助于优化用于柔性储能应用的渗透复合材料的材料性能。