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Bioequivalent UV detectors based on cholesteric liquid crystals: effects of spectral composition and quantitative account for intensity of UV radiation

机译:基于胆甾型液晶的生物等效紫外探测器:光谱成分和紫外线强度的定量算法的影响

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Response of cholesteric sensor materials to biologically active UV radiation has been studied. The sensor mixture comprised a cholesteric liquid crystalline matrix doped with provitamin D, and changes in the maximum selective reflection wavelength λ_(max) caused by the photochemical reaction of provitamin D → vitamin D transformation were recorded. Using a UV source (DRT-240 lamp) calibrated accounting for the specific irradiation geometry, λ_(max) shifts were obtained as function of UV illuminance dose (in J/cm~2). Using a set of optical filters cutting off specified parts of the provitamin D absorption spectrum, effects of the spectral composition of UV radiation upon the response characteristics of sensor were determined. The results obtained support our earlier considerations of the developed sensor material as "bioequivalent".
机译:研究了胆甾体传感器材料对生物活性UV辐射的反应。传感器混合物包括掺杂有肽D的胆甾醇液晶基质D,并记录由Provitamin D→维生素D转化的光化学反应引起的最大选择性反射波长λ_(MAX)的变化。使用UV源(DRT-240灯)校准的算法用于特定辐射几何形状,获得λ_(最大)偏移作为UV照度剂量的功能(在J / cm〜2中)。使用一组光学过滤器切断了ProITamin D吸收光谱的指定部分,测定了UV辐射光谱组成对传感器响应特性的影响。结果支持我们早期考虑所发达的传感器材料作为“生物等效”。

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