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首页> 外文期刊>Bulletin of the Korean Chemical Society >Development of a MATLAB Algorithm for Calculating Reorganization Energy Utilizing Rectilinear Normal Mode Displacements:Investigation of the Effect of Substituents on Electron and Hole Reorganization Energies of Styryl-Capped Silicon Quantum Dots
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Development of a MATLAB Algorithm for Calculating Reorganization Energy Utilizing Rectilinear Normal Mode Displacements:Investigation of the Effect of Substituents on Electron and Hole Reorganization Energies of Styryl-Capped Silicon Quantum Dots

机译:用于计算重组能量的MATLAB算法利用直线正常模式位移的研究:取代基对硅量子点电子和空穴重组能量的影响研究

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摘要

We developed a MATLAB algorithm to calculate reorganization energy utilizing rectilinear normal mode displacements.Normal mode-projected rectilinear displacements and the corresponding angular frequencies,required for evaluating charge transfer reorganization energy within the harmonic oscillator approximation,were obtained from Cartesian coordinates and Cartesian force constant matrices determined with respect to the principal axes.To verify the algorithm developed with MATLAB,we compared the computed charge transfer reorganization energies to those evaluated by the DUSHIN program,and there was no substantial difference,indicating that our algorithm guarantees the numerical accuracy of the calculations.This algorithm was applied to design silicon quantum dots(Si QDs)with low reorganization energies for charge transfer.
机译:我们开发了一个利用直线法向模位移计算重组能的MATLAB算法。从笛卡尔坐标和笛卡尔力常数矩阵中获得了在谐振子近似下计算电荷转移重组能所需的法向模投影直线位移和相应的角频率。为了验证用MATLAB开发的算法,我们将计算的电荷转移重组能与DUSHIN程序计算的电荷转移重组能进行了比较,没有实质性差异,这表明我们的算法保证了计算的数值精度。该算法被应用于设计用于电荷转移的低重组能硅量子点。

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