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重氮感光材料在我国已有三、四十年的历史,因其成本低,使用方便,在晒图、幻灯、缩微复制、印刷电路、印刷制版和二底图等方面得到广泛应用.国外对重氮感光材料的研究非常重 相似文献
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油溶性偶氮染料的合成及其性能研究 总被引:16,自引:0,他引:16
随着染料在现代科技中的广泛应用,染料的油溶性也日益受到人们的重视.如:非线性光学材料、激光盘光学信息存贮材料中使用的染料、彩色成像中的油溶性影像染料等,对染料在有机溶剂中的溶解度都有很高的要求.偶氮染料是有机染料中的主要类型,但目前对其分子结构与油溶性关系的研究甚少.本文合成了一类黄色偶氮染料(见表1),并对其色光、油溶性等性能进行了测试,发现取代基相对于偶氮基的位置,是影响偶氮染料油溶性的主要因素. 相似文献
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有机-无机复合ZrO2-SiO2平面光波导 总被引:2,自引:0,他引:2
采用溶胶-凝胶法合成ZrO2-SiO2有机一无机复合光波导材料,通过改变其中ZrO2的含量来调节材料的折射率,使材料分别适用于平面光波导的导光层(ng≈1.497)和衬底层、包层(mb=nc≈1.479)。采用旋转涂膜工艺和相应的热处理,在单晶硅基片上制备衬底层、导光层和包层等薄膜,其中导光层介质因具有感光性而可通过紫外光刻来制备光路图案。所得有机一无机复合ZrO2-SiO2板型平面光波导(衬底层 导光层),用棱镜耦合截断法测试其光损耗在632.8nm波长处约为0.8dB/cm。对板型平面波导的导光层薄膜进行紫外光刻和异丙醇淋洗,制备出脊状光波导通道,在覆盖包层后,即获得埋层沟道式平面光波导。采用端耦合截断法测试了埋层沟道式平面光波导的光损耗(小于0.1dB/cm),并观察了其近场图像以及导光材料在近红外窗口的吸收光谱。 相似文献
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NANOINDENTATION OF THIN-FILM-SUBSTRATE SYSTEM: DETERMINATION OF FILM HARDNESS AND YOUNG’S MODULUS 总被引:2,自引:1,他引:2
In the present paper, the hardness and Young‘s modulus of film-substrate systems are determined by means of nanoindentation experiments and modified models. Aluminum film and two kinds of substrates, i.e. glass and silicon, are studied. Nanoindentation XP Ⅱ and continuous stiffness mode are used during the experiments. In order to avoid the influence of the Oliver and Pharr method used in the experiments, the experiment data are analyzed with the constant Young‘s modulus assumption and the equal hardness assumption. The volume fraction model (CZ model) proposed by Fabes et al. (1992) is used and modified to analyze the measured hardness. The method proposed by Doerner and Nix (DN formula) (1986) is modified to analyze the measured Young‘s modulus. Two kinds of modified empirical formula are used to predict the present experiment results and those in the literature, which include the results of two kinds of systems, i.e., a soft film on a hard substrate and a hard film on a soft substrate. In the modified CZ model, the indentation influence angle, φ, is considered as a relevant physical parameter, which embodies the effects of the indenter tip radius, pile-up or sink-in phenomena and deformation of film and substrate. 相似文献
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自从1938年,Scheibe[1]发现了菁染料聚集体中的能量传递现象,人们对菁染料的聚集行为展开了大量的研究[2,3].由于菁染料聚集体对乳剂具有特殊的增感作用,人们主要研究聚集体在乳剂中的增感机理[4,5]以及菁染料聚集的溶剂效应与浓度效应[6]... 相似文献
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