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Photoactuated Properties of Acetylene-Congeners Non-Metallic Dyes and Molecular Design for Solar Cells

机译:乙炔同类非金属染料的光致活化性质和太阳能电池的分子设计

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摘要

This paper theoretically simulated (using DFT and TD-DFT in N,N-dimethylformamide (DMF) solvent) the photodynamic properties of three non-metallic dye molecules with D-π-A1-π-A2 structure. The total photoelectric conversion efficiency (PCE) could be evaluated by the following parameters: the geometric structures, the electronic structures, and the absorption spectra, the analyses of charge difference density (CDD) and natural bond orbitals (NBO), the analyses of ionization potential (IP) and electron affinity (EA) from electronic contribution capacity, the reorganization energies (λh, λe, and λtotal), and the chemical reaction parameter (h, ω, ω, and ω+) for intramolecular charge transfer (ICT) processing, the excited lifetime (τ) and the vertical dipole moment (μnormol). The Ginject, the Gdyeregen, the light harvesting efficiencies (LHE) and the excited lifetime (τ) were used to explain experimental JSC. The experimental trend of VOC was explained by the calculation of ECB and μnormol. Moreover, the 15 dyes were designed by adding the electron-donor groups (–OH, –NH2, and –OCH3) and the electron-acceptor groups (–CF3, –F, and –CN) to the LS-387 molecular skeleton, which improved electronic contribution, intramolecular charge transfer (ICT), and optoelectronic performance.
机译:本文从理论上模拟了(在N,N-二甲基甲酰胺(DMF)溶剂中使用DFT和TD-DFT)三种具有D-π-A1-π-A2结构的非金属染料分子的光动力学性质。可以通过以下参数评估总光电转换效率(PCE):几何结构,电子结构和吸收光谱,电荷差密度(CDD)和自然键轨道(NBO)的分析,电离的分析电子贡献能力产生的电势(IP)和电子亲和力(EA),重组能量( λ h λ e λ t o t a l )和化学反应参数(h,ω, ω - ,以及 ω< / mi> + )用于分子内电荷转移(ICT)处理,激发寿命(τ)和垂直偶极矩(<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm6”溢出=“ scroll”> μ n o r m o l )。 < msup> G i n j e c < / mi> t G d < / mi> y e r e g e n ,光收集效率(LHE)和激发寿命(τ )用来解释实验 < mi> J S C 的实验趋势V O C 解释为 E C B 和<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm12” overflow =“ scroll”> μ n o r m o l 。此外,通过在LS-387分子骨架上添加电子给体基团(–OH,–NH2和–OCH3)和电子受体基团(–CF3,–F和–CN)设计了15种染料,改善了电子贡献,分子内电荷转移(ICT)和光电性能。

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