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One-step vapor-phase synthesis of transparent high refractive index sulfur-containing polymers

机译:透明高折射率硫相的一步气相合成

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摘要

High refractive index polymers (HRIPs) have recently emerged as an important class of materials for use in a variety of optoelectronic devices including image sensors, lithography, and light-emitting diodes. However, achieving polymers having refractive index exceeding 1.8 while maintaining full transparency in the visible range still remains formidably challenging. Here, we present a unique one-step vapor-phase process, termed sulfur chemical vapor deposition, to generate highly stable, ultrahigh refractive index ( n 1.9) polymers directly from elemental sulfur. The deposition process involved vapor-phase radical polymerization between elemental sulfur and vinyl monomers to provide polymer films with controlled thickness and sulfur content, along with the refractive index as high as 1.91. Notably, the HRIP thin film showed unprecedented optical transparency throughout the visible range, attributed to the absence of long polysulfide segments within the polymer, which will serve as a key component in a wide range of optical devices.
机译:最近,高折射率聚合物(HRIPS)最近作为一种重要的材料,用于各种光电器件,包括图像传感器,光刻和发光二极管。然而,实现具有超过1.8的具有折射率的聚合物,同时保持可见范围的完全透明度仍然是突出的攻击性。这里,我们介绍了一种独特的一步气相过程,称为硫化学气相沉积,直接产生高稳定的超高折射率(N> 1.9)聚合物。沉积过程涉及元素硫和乙烯基单体之间的气相自由基聚合,以提供具有受控厚度和硫含量的聚合物膜,以及高达1.91的折射率。值得注意的是,HRIP薄膜在整个可见范围内显示出前所未有的光学透明度,其归因于聚合物中的长多硫化物区段,这将用作各种光学器件中的关键组分。

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