基于金属阳离子与聚阴离子逐步交替吸附形成的多价稀土金属阳离子聚合物薄膜,制备共振光子光子带隙结构的新方法

I. V. Beresneva, G. Khomutov, B. Mantsyzov, I. A. Ozheredov, A. Shkurinov, P. Masselin, G. Mouret
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引用次数: 0

摘要

只提供摘要形式。近年来,人们对光在周期性结构中的传播进行了深入的研究。这些结构通常被称为光子带隙(PBG)晶体。本文介绍了具有折射率、吸收系数周期性调制和非线性特性的PBG材料的制备方法。该方法基于逐层自组装技术。本文介绍了利用聚阴离子和多价金属阳离子逐步配位形成的高含量多价金属阳离子聚合物薄膜和多层结构的研究结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New method of fabrication of resonant photonic photonic band gap structures based on the polymer films containing multivalent rare-earth metal cations formed by stepwise alternate adsorption of metal cations and polyanions
Summary form only given. The last years have witnessed an intense investigation of light propagation in periodic structures. These structures are usually referred to as photonic band gap (PBG) crystals. In this presentation we describe the method of fabrication of PBG materials that may have periodic modulation of refraction index, absorption coefficient and the nonlinearity as well. The method is based on the layer-by-layer self-assembly technique. We present results of a study of polymeric films and the multilayer structures with a very high content of multivalent metal cations formed by taking advantage of stepwise coordination of polyanion and multivalent metal cations.
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