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Molecular structural relationships on optical constants of metallized azo dyes for optical recording materials

机译:光学记录材料金属化偶氮染料光学常数的分子结构关系

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Metal-azo complex is a new class of optical strorage medium and nonlinear optical material. The complex refractive indices N(N=n-ik), dielectric constants ε(ε=ε1-iε2), and absorption coefficients α of four kinds of novel azo dyes based on 4-methylthiazole, 5-methyl-3-isoxazole spin-coated thin films are determined from an scanning ellipsometer in the wavelength 400-700nm region. The molecular structural relationships on optical constants of metallized azo dyes were investigated. Metal chelation strongly (about one times) enhances the optical constants at the peaks and results in large bathochromic shift (ca.60-70nm) of absorption band. Bathochromic shift of Ni-azo complex is about 10nm larger than that of Zn-azo complex due to different spatial configurations formed in the metal-azo complexes. Meanwhile, the diazonium components of azo dye also affect the optical constants and maximum absorption.
机译:金属 - 偶氮配合物是一类新的光学校验介质和非线性光学材料。复合折射率n(n = n-ik),介电常数ε(ε=ε1-iε2),以及基于4-甲基噻唑,5-甲基-3-异恶唑的四种新型偶氮染料的吸收系数α从波长400-700nm区域中的扫描椭圆仪确定涂覆的薄膜。研究了金属化偶氮染料光学常数上的分子结构关系。金属螯合强烈(约一次)增强峰值的光学常数,并导致吸收带的大型游泳体移位(Ca.60-70nm)。由于在金属 - 偶氮配合物中形成的不同空间配置,Ni-Azo络合物的碱基偏移大约大约10nm大于Zn-Azo复合物的偏移量。同时,偶氮染料的重氮成分也影响光学常数和最大吸收。

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