首页> 美国卫生研究院文献>ACS Omega >Effects of Internal Electron-Withdrawing Moietiesin D–A−π–A Organic Sensitizers on PhotophysicalProperties for DSSCs: A Computational Study
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Effects of Internal Electron-Withdrawing Moietiesin D–A−π–A Organic Sensitizers on PhotophysicalProperties for DSSCs: A Computational Study

机译:内部吸电子部分的作用在D–A–π–A有机光敏剂上DSSC的属性:计算研究

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摘要

D–A−π–A dyes differ from the traditional D−π–A framework having several merits in dye-sensitized solar cell (DSSC) applications. With regard to D−π–A dyes, D–A−π–A dyes red-shift absorption spectra and show particular photostability. Nevertheless, the effects of internal acceptor on the charge transfer (CT) probability are unclear. We employed density functional theory (DFT), time-dependent DFT (TD-DFT), and TD-DFT molecular dynamics (MD) simulations to investigate the effects of internal acceptor on the photophysical properties of D–A−π–A dyes on DSSCs. Our calculations show the absorption bands of D–A−π–A dyes with strong electron-withdrawing internal acceptors exhibiting significant characteristics of dual CT; the excited electron density is transferred to the internal and terminal acceptors simultaneously. Particularly, the internal acceptor traps a significant amount of electron density upon photoexcitation. The TD-DFT MD simulations at 300 K show that only a small amount of excited electron density ispushing and pulling between the internal acceptor and terminal acceptormoieties; the thermal energy is not high enough to drive the electrondensity from the internal acceptor to the terminal acceptor. Our studyreveals the nature of CT bands of D–A−π–Adyes providing a theoretical basis for further rational engineering.
机译:D-A-π-A染料不同于传统的D-π-A骨架,在染料敏化太阳能电池(DSSC)应用中具有多个优点。关于D-π-A染料,D-A-π-A染料吸收红移吸收光谱并显示出特定的光稳定性。但是,内部受体对电荷转移(CT)概率的影响尚不清楚。我们采用密度泛函理论(DFT),随时间变化的DFT(TD-DFT)和TD-DFT分子动力学(MD)模拟来研究内部受体对D–A–π–A染料光物理性质的影响。 DSSC。我们的计算表明,具有强吸电子内部受体的D–A–π–A染料的吸收带具有双重CT的显着特征;激发的电子密度同时转移到内部和末端受体上。特别地,内部受体在光激发时捕获大量的电子密度。 TD-DFT MD在300 K下的模拟表明,只有少量的激发电子密度在内部接收器和终端接收器之间推动和拉动部分热能不足以驱动电子从内部受体到末端受体的密度。我们的研究揭示了D–A–π–A CT波段的性质染料为进一步的合理工程提供了理论依据。

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