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High refractive index transparent nanocomposites prepared by in situ polymerization

机译:原位聚合制备的高折射率透明纳米复合材料

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High refractive index transparent nanocomposites have been developed by in situ polymerization of a precursor that contains functional monomers and surface modified anatase TiO2 nanoparticles for optoelectronic applications. The monomers are in the liquid form, so environmentally friendly solventless precursors can be prepared. The precursor can be processed into various shapes or thick films (>50 microns) of the nanocomposite. The relationships of the chemical structure of the organic matrix, nanoparticle content and dispersity with the refractive index, transparency, mechanical and thermal properties are systematically investigated. The refractive index, and mechanical and thermal properties of the nanocomposite are increased with increasing TiO2 content and aromatic structure in the organic matrix due to their rigid characteristics. The transparency of the nanocomposite is increased with increasing TiO2 content and dispersity. At the same loading of nanoparticles, the higher dispersity and the better transparency are due to the less extent of Rayleigh scattering. At 18 vol% (60 wt%) of TiO2, the acetic acid modified TiO2/poly(4-vinyl benzyl alcohol) nanocomposite has a refractive index of 1.73 and excellent transparency (>85% from 500 nm to 800 nm). The refractive index of the nanocomposite can be further increased to 1.77 by replacing aliphatic acetic acid modified TiO2 with aromatic phenyl acetic acid modified TiO2. The results of this work provide new knowledge and a new pathway to design a polymer based high refractive index material.
机译:高折射率透明纳米复合材料已通过原位聚合用于光电子应用的前驱体开发,该前体包含功能性单体和表面改性的锐钛矿型TiO2纳米颗粒。单体为液体形式,因此可以制备环保的无溶剂前体。可以将前体加工成纳米复合材料的各种形状或厚膜(> 50微米)。系统地研究了有机基质的化学结构,纳米颗粒含量和分散性与折射率,透明度,机械和热性能之间的关系。纳米复合材料由于其刚性特性,随着TiO2含量和有机基质中芳族结构的增加,其折射率以及机械和热性能也随之提高。纳米复合材料的透明度随TiO2含量和分散度的增加而增加。在相同的纳米颗粒负载下,较高的分散性和更好的透明度是由于瑞利散射的程度较小。在TiO2的体积百分比为18%(60重量%)时,乙酸改性的TiO2 /聚(4-乙烯基苄醇)纳米复合材料的折射率为1.73,透明度极佳(从500 nm到800 nm,> 85%)。通过用芳族苯基乙酸改性的TiO 2代替脂肪族乙酸改性的TiO 2,可以将纳米复合材料的折射率进一步提高到1.77。这项工作的结果为设计基于聚合物的高折射率材料提供了新的知识和新的途径。

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