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一种高透过率,深截止的UVc波段(200~280 nm) 有机材料的研究(Ⅰ)
引用本文:吕文波,许强,杜为民,吴思诚,叶学敏,赵太平,孟广政,宋增福.一种高透过率,深截止的UVc波段(200~280 nm) 有机材料的研究(Ⅰ)[J].光谱学与光谱分析,2003,23(2):209-212.
作者姓名:吕文波  许强  杜为民  吴思诚  叶学敏  赵太平  孟广政  宋增福
作者单位:1. 北京大学物理学院,北京,100871
2. 东北电子技术研究所,辽宁,锦州,121000
3. 钢铁研究总院,北京,100081
基金项目:国家自然科学基金(专项基金:No.10244001)
摘    要:本文阐述了一种专用有机材料(粉末)在不同酸性溶液中的光谱特征,研究表明,这种材料在λ=252 nm处,透过率T=56.5%,带宽约为16nm,而在λ=290nm处有一个很强的吸收峰(ε>10L·(mol·cm)~(-1)),吸光度A_(280~298nm)>8,即透过率T_(280~298nm)<10~(-8)。这种有机材料在UVc波段(200~280nm)具有高透过率,深截止的明显特点。实验中还发现,通过调节溶剂的pH值和选取不同极性的溶剂,原来的两个吸收峰消失,而在λ=290nm处出现一个新的强吸收峰,并且透过峰可以在251~260nm范围内移位。利用材料的这种特征,再配合传统的镀膜和色玻璃技术,有可能制备出性能优良的紫外滤光片。

关 键 词:高透过率  锐截止  质子化  紫外滤光片
文章编号:1000-0593(2003)02-0209-04
修稿时间:2002年12月8日

A High Transmittance Material in UVc Band
LU Wen-bo,XU Qiang,DU Wei-min,WU Si-cheng,YE Xue-min,ZHAO Tai-ping,MENG Guang-zheng and SONG Zeng-fu . School of Physics,Peking University,Beijing ,China . Northeast Institute of Electronic Technology,Jinzhou ,China . Central Iron and Steel Research Institute,Beijing ,China.A High Transmittance Material in UVc Band[J].Spectroscopy and Spectral Analysis,2003,23(2):209-212.
Authors:LU Wen-bo  XU Qiang  DU Wei-min  WU Si-cheng  YE Xue-min  ZHAO Tai-ping  MENG Guang-zheng and SONG Zeng-fu School of Physics  Peking University  Beijing  China Northeast Institute of Electronic Technology  Jinzhou  China Central Iron and Steel Research Institute  Beijing  China
Institution:School of Physics, Peking University, Beijing 100871, China.
Abstract:Spectral characteristics of an organic material in acid with different concentrations were investigated in the solution of a proper acid concentration. The results showed that at 252 nm the transmittance T = 56.5 % , but at 290 run the material had a strong absorption peak (e>104L. (mol.cm)-1). The absorbance A280-298nm >8, i.e. T280-298m< 10-8. The band width was about 16 nm. Therefore, this material has conspicuous characteristics such as high transmittance and deep cutoff in the background in ultravio-let-c band. The transmission peak can be shifted in the range of 251-260 nm by changing the pH value of the solution and selecting solution with a different polarity. By analyzing the spectra of the material in acid we found that the two original absorption peaks disappeared, and a new strong absorption peak appeared at 290 nm. Moreover, it seems to be some relation between the two absorption peak intensity and the new peak, which needs to be further studied. Using this result, we can produce high quality UV-filters of this material with traditional coating and colour glass technology.
Keywords:High transmittance  Deep cutoff  Protonation  UV-filter
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