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首页> 外文期刊>Angewandte Chemie >Tunable Hydrophobicity via Dimensionally Confined Polymerization of Organometallic Adducts
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Tunable Hydrophobicity via Dimensionally Confined Polymerization of Organometallic Adducts

机译:通过尺寸狭窄的有机金属加合物聚合可调谐疏水性

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摘要

Fabrication of tunable fine textures on solid metal surfaces often demands sophisticated reaction/processing systems. By exploiting in situ polymerization and self-assembly of inorganic adducts derived from liquid metals (the so-called HetMet reaction) with concomitant solidification, solid metal films with tunable texture are readily fabricated. Serving as a natural dimensional confinement, interparticle pores and capillary-adhered thin liquid films in a pre-packed bed of undercooled liquid metal particles lead to the expeditious surface accumulation of organometallic synthons, which readily oligomerize and self-assemble into concentration-dictated morphologies/patterns. Tuning particle size, particle packing (flat or textured), and reactant concentration generates diverse, autonomously organized organometallic structures on a metal particle bed. Concomitant solidification and sintering of the underlying undercooled particle bed led to a multiscale patterned solid metal surface. The process is illustrated by creating tunable features on pre-organized metal particle beds with concomitant tunable wettability as illustrated through the so-called petal and lotus effects.
机译:在固体金属表面上制造可调谐的精细织构通常需要复杂的反应/处理系统。通过利用液态金属衍生的无机加合物(所谓的HetMet反应)的原位聚合和自组装,并伴随固化,可以容易地制备具有可调织构的固体金属膜。作为一种自然的尺寸限制,在过冷液态金属颗粒的预填充床中,粒子间孔和毛细粘附的薄液膜导致有机金属合成子的快速表面聚集,其容易齐聚并自组装成浓度决定的形态/图案。调整颗粒大小、颗粒堆积(平坦或有纹理)和反应物浓度,可在金属颗粒床上生成各种自主组织的有机金属结构。伴随着底层过冷颗粒床的凝固和烧结,形成了多尺度图案化的固体金属表面。这一过程通过在预先组织好的金属颗粒床上创建可调特征来说明,并伴随可调润湿性,如所谓的花瓣和莲花效应所示。

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