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首页> 外文期刊>Applied Physics. A, Materials Science & Processing >Log-pile photonic crystal of CdS-polymer nanocomposites fabricated by combination of two-photon polymerization and in situ synthesis
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Log-pile photonic crystal of CdS-polymer nanocomposites fabricated by combination of two-photon polymerization and in situ synthesis

机译:双光子聚合原位合成CdS聚合物纳米复合材料的对数堆光子晶体

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摘要

A log-pile photonic crystal of CdS nanoparticles-polymer nanocomposites was successfully fabricated by a novel method combining the two-photon polymerization technique and in situ synthesis of CdS nanoparticles in a polymer matrix. The photonic band gap of the three-dimensional (3D) log-pile photonic crystal is confirmed and becomes more effective for CdS nanoparticles-polymer nanocomposites than polymer doped with Cd~(2+) ions, because the nanocomposites possess a higher refractive index than the polymer. The proposed concept in the new fabrication method for a 3D microstructure of polymer nanocomposites should be of critical importance in providing a general methodology for functionalization of materials via functional nanocomposites used in the field of laser microstructure fabrication.
机译:通过结合双光子聚合技术和在聚合物基质中原位合成CdS纳米粒子的新方法,成功地制备了CdS纳米粒子-聚合物纳米复合材料的对数堆光子晶体。证实了三维(3D)对数堆光子晶体的光子带隙,并且比掺杂Cd〜(2+)离子的聚合物对CdS纳米颗粒-聚合物纳米复合物更有效,因为纳米复合物具有比Cd〜(2+)离子更高的折射率。聚合物。聚合物纳米复合材料的3D微观结构的新制造方法中提出的概念在为通过激光显微结构制造领域中使用的功能性纳米复合材料提供材料功能化的通用方法学中至关重要。

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