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3D Bulk Ordering in Macroscopic Solid Opaline Films by Edge-Induced Rotational Shearing

机译:边缘诱导旋转剪切在宏观固体乳白胶片中进行3D批量排序

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摘要

A breakthrough in the field of large area photonic structures is reported, based on permanent ordering of solid polymeric films of sub-micrometer spheres by edge rotational-shearing. The resulting high-quality polymer opal thin-films exhibit strikingly intense structural color, as confirmed by combining a number of spectroscopic approaches. This induced self-assembly on macroscopic length scales represents a step-change away from current surface lithographies, presenting new routes for assembling solid ordered photonic materials. Despite previous reports of shear-ordering in sedimentary colloids in solution, no precedents exist for the application of such techniques to these granular solvent-free systems, which allow formation of permanent composite structures in the solid-state.
机译:据报道,通过边缘旋转剪切对亚微米球体的固态聚合物薄膜进行永久排序,从而在大面积光子结构领域取得了突破。结合多种分光镜方法可以证实,所得的高质量聚合物蛋白石薄膜呈现出惊人的强烈结构色彩。这种在宏观尺度上引起的自组装代表了与当前表面光刻技术的一步之遥,为组装固体有序光子材料提供了新途径。尽管先前有关于溶液中沉积胶体剪切顺序的报道,但尚无先例将此类技术应用到这些无溶剂粒状体系中,从而可以形成固态的永久复合结构。

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  • 来源
    《Advanced Materials》 |2011年第13期|p.1540-1544|共5页
  • 作者单位

    NanoPhotonics Centre University of Cambridge Cambridge CB3 OHE, UK;

    Deutsches Kunststoff-lnstitut (DKI) Schlossgartenstrasse 6, D-64289 Darmstadt, Germany;

    NanoPhotonics Centre University of Cambridge Cambridge CB3 OHE, UK;

    NanoPhotonics Centre University of Cambridge Cambridge CB3 OHE, UK;

    NanoPhotonics Centre University of Cambridge Cambridge CB3 OHE, UK;

    NanoPhotonics Centre University of Cambridge Cambridge CB3 OHE, UK;

    Deutsches Kunststoff-lnstitut (DKI) Schlossgartenstrasse 6, D-64289 Darmstadt, Germany;

    NanoPhotonics Centre University of Cambridge Cambridge CB3 OHE, UK;

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