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Experimental and Theoretical Investigation of the Photoelectrical Properties of Tetrabromophenol Blue- and Bromoxylenol Blue-Based Solar Cells

机译:四溴苯酚蓝和溴代苯甲酚蓝基太阳能电池光电特性的实验和理论研究

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Tetrabromophenol blue and Bromoxylenol blue as the sensitizers of dye-sensitized solar cells (DSSCs) are measured in experiments. In order to better understand the photoelectrical properties of the two dyes, we obtain the UV-Vis spectra, fluorescence spectra, and current-voltage characteristics. The frontier molecular orbital, energy levels, the first hyperpolarizability, the first hyperpolarizability density, and molecular electrostatic potential are calculated with density functional theory (DFT) and time-dependent DFT (TDDFT). The critical factors including the light harvesting efficiency (LHE (Tetrabromophenol blue for 0.0284 and Bromoxylenol blue for 0.0290), the driving force of electron injection (ΔGinject), x-axis direction dipole moment (μnormal), the conduction band of edge of the semiconductor (ΔECB), and the excited-state lifetime (τ)) are computed, which have a close connection to the short-circuit current density (Jsc) and open-circuit voltage (Voc). The results show that the Jsc (0.09 mA/cm2) and Voc (0.39 V) of Tetrabromophenol blue have larger values, which can be explained by a larger absolute value of ΔGinject, absolute value of μnormal, τ, and ΔECB. Therefore, Tetrabromophenol blue displays well photoelectric conversion efficiency compared with Bromoxylenol blue.
机译:在实验中测量了作为染料敏化太阳能电池(DSSCs)敏化剂的四溴苯酚蓝和溴苯甲酚蓝。为了更好地了解这两种染料的光电性能,我们获得了UV-Vis光谱,荧光光谱和电流-电压特性。使用密度泛函理论(DFT)和时变DFT(TDDFT)计算前沿分子轨道,能级,第一超极化率,第一超极化率密度和分子静电势。关键因素包括集光效率(LHE(四溴苯酚蓝为0.0284,溴代苯酚蓝为0.0290),电子注入的驱动力(ΔGinject),x轴方向偶极矩(μnormal),半导体边缘的导带(ΔECB)和激发态寿命(τ)被计算出来,它们与短路电流密度(Jsc)和开路电压(Voc)密切相关。结果表明,四溴酚蓝的Jsc(0.09 mA / cm2)和Voc(0.39 V)具有较大的值,这可以用较大的ΔGinject绝对值,μnormal的绝对值,τ和ΔECB来解释。因此,与溴代苯甲酚蓝相比,四溴酚蓝显示出良好的光电转换效率。

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