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通过化学气相聚合将模板纳米纤维合成到液晶膜中。

Templated nanofiber synthesis via chemical vapor polymerization into liquid crystalline films.

机构信息

Biointerfaces Institute, University of Michigan, Ann Arbor, MI, USA.

Department of Materials Science and Engineering, University of Michigan, Ann Arbor, MI, USA.

出版信息

Science. 2018 Nov 16;362(6416):804-808. doi: 10.1126/science.aar8449.

Abstract

Extrusion, electrospinning, and microdrawing are widely used to create fibrous polymer mats, but these approaches offer limited access to oriented arrays of nanometer-scale fibers with controlled size, shape, and lateral organization. We show that chemical vapor polymerization can be performed on surfaces coated with thin films of liquid crystals to synthesize organized assemblies of end-attached polymer nanofibers. The process uses low concentrations of radical monomers formed initially in the vapor phase and then diffused into the liquid-crystal template. This minimizes monomer-induced changes to the liquid-crystal phase and enables access to nanofiber arrays with complex yet precisely defined structures and compositions. The nanofiber arrays permit tailoring of a wide range of functional properties, including adhesion that depends on nanofiber chirality.

摘要

挤出、静电纺丝和微拉伸广泛用于制造纤维状聚合物垫,但这些方法只能有限地获得具有可控尺寸、形状和横向组织的纳米级纤维的取向阵列。我们表明,可以在涂有液晶薄膜的表面上进行化学气相聚合,以合成末端接枝聚合物纳米纤维的有序组装体。该过程使用最初在气相中形成的低浓度自由基单体,然后扩散到液晶模板中。这最大限度地减少了单体对液晶相的诱导变化,并能够获得具有复杂但精确定义的结构和组成的纳米纤维阵列。纳米纤维阵列允许调整包括依赖于纳米纤维手性的附着力在内的广泛的功能特性。

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