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首页> 外文期刊>Optics & Laser Technology >Linear and nonlinear optical properties of nano-spherical Perylenetetracarboxylic dianhydride/ITO as a new optical system
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Linear and nonlinear optical properties of nano-spherical Perylenetetracarboxylic dianhydride/ITO as a new optical system

机译:纳米球形丙基甲羧酸二氢化物/ ITO作为新光学系统的线性和非线性光学性能

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摘要

In the current work, the thermal evaporation method was used to deposit the Perylenetetracarboxylic dianhydride (PTCDA) into conductive glass titled (ITO glass) as a new trend in the optical spectroscopy nowadays. X-Ray Diffraction (XRD) was evidenced that the PTCDA/ITO thin film has had a nanostructural characteristic, and the crystalline part of the film oriented with (1?0?2) plane. Atomic Force Microscopes (AFM) was definite that the morphology containing nano-spherical particles. The absorption spectra were examined in the UV–Vis-NIR regions and determined the significant parameters such as molar extinction coefficient εmolar, oscillator strength ?, electric dipole strengthq2and optical energy gap. The linear optical constant; extinction coefficient, (k), and refractive index (n) were measured using spectrophotometric measurements in the wavelength range 300–2500?nm. The real part and imaginary parts of the dielectric constant and optical conductivity were evaluated and discussed. The third order non-linear susceptibility, χ(3)and nonlinear refractiven(2)were estimated based on generalized Miller's rule and linear refractive index at photon energy from 0.5 to 4?eV. All possible linear and nonlinear parameters are reported for using this material in OLED devices. PTCDA is a promising organic semiconductor for wide-scale application in organic devices and engineering.
机译:在当前的工作中,使用热蒸发方法将前丙羧酸二酐(PTCDA)沉积到标题(ITO玻璃)的导电玻璃中作为光谱谱的新趋势。证明PTCDA / ITO薄膜具有纳米结构特性,以及用(1≤0≤2)平面取向的薄膜的晶体部分具有纳米结构特性。原子力显微镜(AFM)明确表示含有纳米球颗粒的形态。在UV-Vis-NIR区域中检测吸收光谱,并确定了摩尔消光系数εmolar,振荡器强度的重要参数,振荡器强度ω,电偶极强度q2和光学能隙。线性光学常数;使用波长范围300-2500Ω·nm的分光光度测量测量消光系数,(k)和折射率(n)。评估和讨论介电常数和光学电导率的实部和虚部。基于广义米勒的规则和光子能量的线性折射率为0.5至4°,估计三阶非线性敏感性,χ(3)和非线性折射(2)估计。报告所有可能的线性和非线性参数在OLED器件中使用此材料。 PTCDA是一个有助于有机半导体,用于有机设备和工程中的广泛应用。

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