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多壁碳纳米管在半氟化聚甲基丙烯酸甲酯嵌段共聚物薄膜中的定位与电渗流

MWCNT Localization and Electrical Percolation in Thin Films of Semifluorinated PMMA Block Copolymers.

作者信息

Staudinger Ulrike, Janke Andreas, Simon Frank, Jakisch Lothar, Bittrich Eva, Formanek Petr, Mielke Lukas, Schlicke Hendrik, Li Qiong, Eckstein Kathrin, Pospiech Doris

机构信息

Leibniz-Institut für Polymerforschung Dresden e.V., Hohe Str. 6, 01069 Dresden, Germany.

出版信息

Polymers (Basel). 2025 May 6;17(9):1271. doi: 10.3390/polym17091271.

Abstract

Diblock copolymers (BCP) consisting of poly(methyl methacrylate) (PMMA) and poly(1H,1H,2H,2H-perfluorodecyl methacrylate) (PsfMA) blocks are employed as templates for controlled dispersion and localization of multi-walled carbon nanotubes (MWCNT). Short MWCNT are modified with perfluoroalkyl groups to increase the compatibility between MWCNT and the semifluorinated (PsfMA) phase and to promote a defined arrangement of MWCNT in the BCP morphology. Thin BCP and BCP/MWCNT composite films are prepared by dip-coating using tetrahydrofuran as solvent with dispersed MWCNT. Atomic force microscopy, scanning and transmission electron microscopy reveal a strong tendency of the BCP to form micelle-like domains consisting of a PMMA shell and a semifluorinated PsfMA core, embedded in a soft phase, containing also semifluorinated blocks. MWCNT preferentially localized in the embedding phase outside the micelles. Perfluoroalkyl-modification leads to significant improvement in the dispersion of MWCNT, both in the polymer solution and the resulting nanocomposite film due to increased interaction of MWCNT with the semifluorinated side chains in the soft phase outside the micelle domains. As a result, reliable electrical conductivity is observed in contrast to films with non-modified MWCNT. Thus, well-dispersed, modified MWCNT provide a defined electrical conduction path at the micrometer level, which is interesting for applications in electronics and vapor sensing.

摘要

由聚甲基丙烯酸甲酯(PMMA)和聚(1H,1H,2H,2H-全氟癸基甲基丙烯酸酯)(PsfMA)嵌段组成的双嵌段共聚物(BCP)被用作多壁碳纳米管(MWCNT)可控分散和定位的模板。短的MWCNT用全氟烷基进行改性,以提高MWCNT与半氟化(PsfMA)相之间的相容性,并促进MWCNT在BCP形态中的特定排列。使用四氢呋喃作为溶剂,将分散的MWCNT通过浸涂法制备BCP和BCP/MWCNT复合薄膜。原子力显微镜、扫描和透射电子显微镜显示,BCP有强烈的形成由PMMA壳和半氟化PsfMA核组成的胶束状区域的趋势,该区域嵌入在一个也包含半氟化嵌段的软相中。MWCNT优先定位在胶束外部的嵌入相中。全氟烷基改性导致MWCNT在聚合物溶液和所得纳米复合薄膜中的分散性显著提高,这是由于MWCNT与胶束区域外部软相中半氟化侧链的相互作用增加。结果,与未改性MWCNT的薄膜相比,观察到了可靠的导电性。因此,分散良好的改性MWCNT在微米级提供了明确的导电路径,这在电子学和气相传感应用中很有意义。

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