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Sol-gel derived hybrid inorganic-organic nanocomposites for optics

机译:溶胶-凝胶光学杂化无机-有机纳米复合材料

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In the course of the recent development of new sol-gel derived materials for optics, organically modified metal oxide matrices have widely demonstrated their great potential. Most of the work performed in this area has been concentrated on embedding organic or organo-metallic chromophores in an oxide network to make optical devices. The main advantages of the use of hybrid organic-inorganic nanocomposites result from their high versatility in offering a wide range of possibilities to fabricate tailor-made materials in terms of their chemical and physical properties, and macroscopic shape molding. Such materials emerging in this field are known as 'sol-gel photonics'. There have been some striking examples of the use of room temperature processed hybrids to design materials with emission, absorption, second-order nonlinear optical and photochromic properties.
机译:在新的用于光学的溶胶-凝胶衍生材料的最新发展过程中,有机改性的金属氧化物基质已被广泛证明其巨大的潜力。在该领域中进行的大多数工作都集中在将有机或有机金属发色团嵌入氧化物网络中以制造光学器件。使用杂化有机-无机纳米复合材料的主要优势是由于它们的多功能性,就其化学和物理性能以及宏观形状成型而言,提供了制造定制材料的广泛可能性。在该领域出现的这种材料被称为“溶胶-凝胶光子学”。使用室温处理的混合材料来设计具有发射,吸收,二阶非线性光学和光致变色特性的材料,这是一些惊人的例子。

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