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Hair-Inspired Crystal Growth of HOA in Cavities of Cellulose Matrix via Hydrophobic-Hydrophilic Interface Interaction

机译:通过疏水性-亲水性界面相互作用在纤维素基质腔中以头发为灵感的HOA晶体生长

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As one of the most ordinary phenomena in nature, numerous pores on animal skins induce the growth of abundant hairs. In this study, cavities of a cellulose matrix were used as hard templates to lead the hair-inspired crystal growth of 12-hydroxyoctadecanoic acid (HOA) through hydrophobic- hydrophilic interface interaction, and short hair-like HOA crystals with a smooth surface were formed on cellulose films. In our findings, by using solvent evaporation induced crystallization, hydrophobic HOA grew along the hydrophilic cellulose pore wall to form regular vertical worm-like and pillar-like crystals with an average diameter of about 200 nm, depending on the experimental conditions and HOA concentration. The formation mechanism of the short hair-like HOA crystals as well as the structure and properties of the cellulose/HOA submicrometer composite films were studied. The pores of the cellulose matrix supplied not only cavities for the HOA crystals fixation but also hydrophilic shells to favor the vertical growth of the relatively hydrophobic HOA crystals. The cellulose/HOA submicrometer composite films exhibited high hydrophobicity, as a result of the formation of the solid/air composite surface. Furthermore, 4-(l,2,2-triphenylethenyl) benzoic acid, an aggregation-induced emission luminogen, was used to aggregate on the cellulose surface with HOA to emit and monitor the HOA crystal growth, showing bifunctional photoluminscence and self-cleaning properties. This work opens up a novel one-step pathway to design bio-inspired submicrometer materials by utilizing natural products, showing potential applications in self-cleaning optical devices.
机译:作为自然界中最普通的现象之一,动物皮肤上的许多毛孔会促使丰富的毛发生长。在这项研究中,使用纤维素基质的腔体作为硬模板,通过疏水-亲水性界面相互作用引导头发启发的12-羟基十八烷酸(HOA)晶体生长,并形成了具有光滑表面的短发状HOA晶体在纤维素膜上。在我们的发现中,通过使用溶剂蒸发诱导的结晶,疏水HOA沿着亲水纤维素孔壁生长,形成规则的垂直蠕虫状和柱状晶体,平均直径约为200 nm,这取决于实验条件和HOA浓度。研究了短发状HOA晶体的形成机理,以及纤维素/ HOA亚微米复合膜的结构和性能。纤维素基质的孔不仅提供了用于HOA晶体固定的空腔,而且还提供了亲水性壳层,有利于相对疏水的HOA晶体的垂直生长。由于形成了固体/空气复合物表面,纤维素/ HOA亚微米复合膜表现出高疏水性。此外,聚集诱导的发光致发光剂4-(1,2,2-三苯基乙烯基)苯甲酸被用于通过HOA聚集在纤维素表面上,以发射和监测HOA晶体的生长,显示出双功能光致发光和自清洁特性。这项工作为利用天然产物设计生物启发性的亚微米材料开辟了一条新的一步式途径,显示了在自清洁光学设备中的潜在应用。

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