首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Fabrication of Asymmetrical and Gradient Hierarchy Structures of Poly-p-xylylenes on Multiscale Regimes Based on a Vapor-Phase Sublimation and Deposition Process
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Fabrication of Asymmetrical and Gradient Hierarchy Structures of Poly-p-xylylenes on Multiscale Regimes Based on a Vapor-Phase Sublimation and Deposition Process

机译:基于气相升华和沉积工艺的多尺度制造在多尺度方面的不对称和梯度层次结构的制造

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摘要

An elegant and precise method to fabricate asymmetrical structures and/or gradient structures was developed based on a vapor-phase sublimation and deposition process. The fabricated materials exhibited versatility and had advantages such as well-controlled pore structures and functional properties ranging from an asymmetrical distribution to a gradient hierarchy; precisely addressed interface chemistries and properties for the constructed materials; and flexibility to produce the materials at multiple scales. By using a time-dependent customization parameter to control the bulk size and/or the dispersion of molecules, fabrication of the materials was demonstrated, producing particles with hierarchical pore structures and with bulk sizes ranging from >500 mu m to submicrons, as well as gradients with both continuously varied porosity and chemical functionality that were demonstrated to be in a controlled direction and varied across multiple scales (centimeter, millimeter, and micrometer). By exploiting chemical vapor deposition to enable multicomponent copolymerization during the fabrication process, multifunctional poly-p-xylylenes formed building blocks for these hierarchical materials and provided the defined surface chemistries. The proposed functional hierarchical materials were constructed and assembled in the vapor phase and in one step, and prospective materials produced by this method are expected to have novel properties and unlimited applications.
机译:基于气相升华和沉积工艺开发了优雅且精确的制造不对称结构和/或梯度结构的方法。制造材料表现出多功能性,具有诸如良好控制的孔隙结构和从不对称分布到梯度层次结构的功能性的优点;精确解决构建材料的界面化学和性质;并灵活地在多个尺度上生产材料。通过使用时间依赖性定制参数来控制分子的块状尺寸和/或分散的分散,对材料的制造进行了说明,生产具有分级孔结构的颗粒,并且具有从>500μm至亚微粒的散装尺寸范围,以及具有连续变化的孔隙率和化学功能的梯度,其被证明在受控方向上并在多个尺度(厘米,毫米和千分尺)上变化。通过利用化学气相沉积以使得在制造过程中的多组分共聚,多功能多功能形成用于这些层级材料的构建块,并提供限定的表面化学物质。所提出的功能性等级材料在气相中构建和组装,并在一步中,通过该方法产生的预期材料预期具有新的性质和无限应用。

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