首页> 外文期刊>Chinese Journal of Physics >Study of electronic structure, optoelectronics, linear and nonlinear optical properties and chemical descriptors of dibromodinitrofluorescein isomers in gasphase and solvent media using abinitio and DFT methods
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Study of electronic structure, optoelectronics, linear and nonlinear optical properties and chemical descriptors of dibromodinitrofluorescein isomers in gasphase and solvent media using abinitio and DFT methods

机译:使用Abinitio和DFT方法研究止血素和溶剂培养基二溴吲哚氏菌荧光素异构体的电子结构,光电子,线性和非线性光学性质和化学描述符

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In this work, we have studied the electronic structure, optoelectronics, linear and nonlinear optical properties of dibromodinitrofluorescein isomers in the gas phase and some solvents media using RHF and B3LYP levels of theory with a cc-pVDZ basis set. Our results suggest that solvent media have an effect on certain properties while some are unaffected. We have also determined the energy band gap and some other parameters like ionization potential, electron affinity, and molar refractivity. Finally, we have calculated the reactivity descriptors through some parameters including chemical hardness (eta), chemical potential(mu), electrophilicity index(omega), softness (theta), electronegativity (EN), Fermi energy (E-F), Electro accepting power (omega(+)), electron-donating power (omega(-)) and net electrophilicity Delta omega(+/-), the reflectivity (R), optical frequency omega(op), Max of Electron charge (Delta E-MAX), Energy change (Delta E) and total Energy minimum(Delta E-MIN) of the compounds. Due to the large , beta, gamma, E, P, chi, epsilon, n, and D of these molecules, we think that these molecules have potential applications in the field of optoelectronics, such as optical communication, optical computing, optical switching, and dynamic image processing.
机译:在这项工作中,我们研究了使用CC-PVDZ基础集的气相和一些溶剂培养基在气相和一些溶剂培养基中的电子结构,光电子,线性和非线性光学性质。我们的研究结果表明,溶剂介质对某些性质产生了影响,而有些则不受影响。我们还确定了能源带隙和电离电位,电子亲和力和摩尔折射等其他参数。最后,我们已经通过一些参数计算了反应性描述符,包括化学硬度(ETA),化学电位(MU),电泳指数(ω),柔软度(θ),柔软度(θ),电力(EF),电镀电力接受功率( Omega(+)),电子捐赠电源(Omega( - ))和净电泳Δω(+/-),反射率(R),光学频率Omega(OP),电子电荷最大(Delta E-Max) ,能量变化(Delta E)和化合物的总能量最小(Delta E-min)。由于大的,β,γ,e,p,chi,epsilon,n和d的这些分子,我们认为这些分子在光电子领域具有潜在的应用,例如光学通信,光学计算,光学切换和动态图像处理。

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