Polymer Architectures for Optical and Photonic Applications

A. Albu, Vlad Marian Târpă
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Abstract

The last decade of the last century is marked by a revolution in the synthesis of materials for optical and photonic applications, against the background of the growing need for new high-performance materials to increase the efficiency, reliability and speed of response linked to environmental aspects. The diversity of requirements and the optimization of the responses has led to a major dispute over the structure and composition of these materials: Inorganic or Organic, Natural or Synthetic, Hybrid or Pure, which has stimulated interest in the development of various architectures. Special attention shall be paid to establishing a fundamental relationship to correlate the non-linear optical response and chemical structure, especially for the category of organic materials- particularly polymers- distinguished by structural/compositional versatility and suitable for processing by simple technique which allows serial production. In fact, optical nonlinearity (NLO) is not an exotic phenomenon. Indeed, all materials are optically nonlinear if light is sufficiently intense. The synthesis of functional photonic organic materials is a major challenge of contemporary community of material scientists to imagine new functional materials based of” collective” phenomena by virtue of the “engineered” molecule- molecule interactions and spatial relationships. In this context, this paper aims to highlight the most important features concerning the structural - compositional relationship of polymeric materials used in optoelectronic and photonic applications.
光学和光子应用的聚合物结构
上个世纪的最后十年标志着光学和光子应用材料合成的革命,背景是对新型高性能材料的需求日益增长,以提高与环境方面相关的效率、可靠性和响应速度。需求的多样性和响应的优化导致了对这些材料的结构和组成的重大争议:无机或有机,天然或合成,混合或纯,这激发了对各种建筑发展的兴趣。应特别注意建立非线性光学响应和化学结构之间的基本关系,特别是有机材料的类别,特别是聚合物,其结构/成分的通用性和适合通过允许批量生产的简单技术进行加工。事实上,光学非线性(NLO)并不是一种奇异现象。事实上,如果光足够强,所有的材料都是光学非线性的。功能光子有机材料的合成是当代材料科学家面临的一个重大挑战,利用“工程化”的分子-分子相互作用和空间关系,设想基于“集体”现象的新型功能材料。在此背景下,本文旨在重点介绍用于光电和光子应用的聚合物材料的结构-组成关系的最重要特征。
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