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首页> 外文期刊>Journal of the Iranian Chemical Society >Natural pigments in dye-sensitized solar cell (DSSC): a DFT-TDDFT study
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Natural pigments in dye-sensitized solar cell (DSSC): a DFT-TDDFT study

机译:染料敏化太阳能电池(DSSC)的天然颜料:DFT-TDDFT研究

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摘要

The molecular structures and photophysical properties of twelve types of the dyes from natural pigments of chlorophyll, flavonoid, carotenoid and anthocyanin were calculated with density functional theory (DFT) and time-dependent DFT (TD-DFT). Based on the comparison and better agreement between experimental wavelengths of maximum absorption and their calculated values with functionals of B3LYP, CAM-B3LYP and BHand-H, the B3LYP/6-31G** level was chosen for the process of our studies. The dyes' properties in solvent environment were carried out using conductor-like polarizable continuum model methods (CPCM-DFT and TD-CPCM-DFT). The results show that pigment type affects the photophysical properties, and the dyes of a specific pigment type have nearly the same properties. Anthocyanins have the highest values of ionization potential (IP), electron affinity (EA), electronic chemical potential (mu) (their absolute values), chemical hardness (eta), electrophilicity index (omega), electroaccepting power (omega(+)) and electrodonating power (omega(-)), which can lead to high efficiency of these dyes type for dye-sensitized solar cells (DSSCs). Energy gap of E-LUMO and E-HOMO of the dyes respectively with the conduction band edge of TiO2 (E-CB) and E-redox of (I-/I-3(-)) couple (Delta E-L and Delta E-H), the free energy difference for electron injection (Delta G(inject)) and the driving force for dye regeneration (Delta G(reg)), the maximum absorption wavelengths of peaks (lambda(max)) and oscillator strength values (f) for all the dyes in gas, acetonitrile and water phases were calculated and explained. These parameters show that carotenoids, chlorophylls and anthocyanins are more appropriate pigments than flavonoid pigment and the estimated open-circuit photo-voltage values (eV(oc)) showed that flavonoids are the desirable pigment. We expect these results could be helpful for DSSC producers to choose highly efficient natural dyes according to their optical and electronic properties.
机译:用密度泛函理论(DFT)和时间依赖性DFT(TD-DFT)计算来自叶绿素,黄酮,类胡萝卜素和花青素的天然颜料的二种类型的染料的分子结构和光学性质。基于比较和更好地达成的最大吸收和与B3LYP,CAM-B3LYP和BHAND-H的功能的计算值,选择了我们研究过程的B3LYP / 6-31G **水平。使用类似导体可极化的连续核模型方法(CPCM-DFT和TD-CPCM-DFT)进行溶剂环境中的染料在溶剂环境中进行。结果表明,颜料型影响光物理性质,特定颜料型的染料具有几乎相同的性质。花青素具有最高的电离潜力(IP),电子亲和力(EA),电子化学电位(MU)(它们的绝对值),化学硬度(ETA),电泳指数(OMEGA),电摄取功率(OMEGA(+))和电码功率(Omega( - )),这可能导致染料敏化太阳能电池(DSSCs)的这些染料类型的高效率。分别用TiO2(E-CB)传导边缘和(I- / I-3( - 3())夫妇(Delta El和Delta eh)的染料的E-Lumo和染料E-HOMO的能隙,电子注射的自由能量差(Delta g(注射))和染料再生的驱动力(Delta g(reg)),峰值的最大吸收波长(Lambda(MAX))和振荡器强度值(f)计算并解释了气体,乙腈和水相的所有染料。这些参数表明,类胡萝卜素,叶绿素和花青素是比黄酮类颜料更合适的颜料,估计的开路光电压值(EV(OC))显示黄酮类化合物是所需的颜料。我们预计这些结果对于DSSC生产者可以帮助根据其光学和电子特性选择高效的天然染料。

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