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Optical UV Dosimeters Based on Photoracemization of (R)-(+)-1,1'-Bi(2-Napthol) (BINOL) within a Chiral Nematic Liquid Crystalline Matrix

机译:基于(r) - (+) - 1,1'-bi(2-napthol)(binol)的光学化的光学紫外线剂量计(binol)

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摘要

Accurate and low-cost wearable or portable monitors for personal solar ultraviolet (UV) exposure are of interest to reduce the risk of adverse UV effects such as eye diseases, sunburn and skin cancer. Here, a novel sensor involving the racemization of a chiral dopant within a nematic liquid crystalline matrix is described, and the suitability of these sensors to act as personal UV dosimeters is explored. It was shown that these sensors respond to UV light with a significant change in the position of the reflection band of the chiral nematic liquid crystal. The sensitivity of these sensors is shown to be 0.23 nm/mJcm2. This corresponds to a change of 80 nm over a dose equivalent to two hours of solar exposure.
机译:对于个人太阳能紫外线(UV)暴露的准确和低成本可穿戴或便携式监测器,可以降低诸如眼部疾病,晒伤和皮肤癌等不良紫外线效应的风险。 在这里,描述了一个新型的传感器,其中涉及列在列液晶基质中的手性掺杂剂的种族化,并探索了这些传感器作为个人紫外线测量器的适用性。 结果表明,这些传感器对紫外线的反应,并在手性列液晶的反射带的位置发生了显着变化。 这些传感器的灵敏度显示为0.23 nm/mjcm2。 这对应于等于两个小时太阳暴露的剂量的80 nm的变化。

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