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酰化纤维素纳米纤维和氧化石墨烯的自组装用于具有时间依赖性干态结构的多重响应性类 Janus 薄膜。

Self-Assembly of Surface-Acylated Cellulose Nanowhiskers and Graphene Oxide for Multiresponsive Janus-Like Films with Time-Dependent Dry-State Structures.

机构信息

Department Wood Technology and Wood-Based Composites, University of Goettingen, Büsgenweg 4, Göttingen, 37077, Germany.

Institute for Theoretical Physics, University of Goettingen, Friedrich-Hund-Platz 1, Göttingen, 37077, Germany.

出版信息

Small. 2020 Nov;16(44):e2004922. doi: 10.1002/smll.202004922. Epub 2020 Oct 8.

Abstract

For the first time Janus-like films of surface-acylated cellulose nanowhiskers (CNWs) with or without graphene oxide (GO) via one-step evaporation-driven self-assembly process are reported, which have reconstructible time-dependent micro-/nanostructures and asymmetric wettability. The heterogeneous aggregation of CNWs on rough Teflon substrates favors the formation of uniform films, leading to hydrophobic smooth bottom surface. The homogeneous nucleation of residual CNWs in bulk suspensions promotes the growth of patchy microspheres with an average diameter of 22.7 ± 2.1 µm, which precipitate on the top surface leading to enhanced hydrophobicity. These patchy microspheres are thermoresponsive and vanish after heating at 60 °C within 1 min, while they are reconstructed at room temperature with time-dependent evolving micro-/nanostructures in dry state within 2 d. The thermoresponsive transition of patchy microparticles leads to accompanied switchable change between transparency and opacity of Janus-like films. Furthermore, the incorporation of GO generates more patchy microspheres with an average diameter of 13.5 ± 1.3 µm on the top surface of hybrid Janus-like films. Different distributions of CNWs and GO in Janus-like films and the solvent-responsive self-assembled patchy microparticles of CNWs facilitate their reversible actuation by showing fast curling in THF within 6 s and flattening in water for at least 25 cycles.

摘要

首次报道了通过一步蒸发驱动自组装过程制备的具有或没有氧化石墨烯 (GO) 的Janus 样表面酰化纤维素纳米纤维 (CNWs) 薄膜,其具有可重构的时变微/纳米结构和不对称润湿性。在粗糙的特氟龙基底上,CNWs 的异质聚集有利于形成均匀的薄膜,从而导致疏水性平滑底面。在本体悬浮液中残留的 CNWs 的均匀成核促进了具有平均直径为 22.7 ± 2.1 µm 的片状微球的生长,这些微球沉淀在顶部表面导致疏水性增强。这些片状微球对温度具有响应性,在 60°C 下加热 1 分钟后消失,而在室温下干燥状态下经过 2 天时间会发生时变微/纳米结构的重构。片状微粒的热响应转变导致 Janus 样薄膜的透明度和不透明度之间发生伴随的可切换变化。此外,GO 的掺入在杂化 Janus 样薄膜的顶部表面上生成了更多具有平均直径为 13.5 ± 1.3 µm 的片状微球。Janus 样薄膜中 CNWs 和 GO 的不同分布以及溶剂响应的自组装片状微球有利于其快速卷曲,在 THF 中卷曲时间小于 6s,在水中至少 25 个循环内可实现自恢复。

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