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Novel Ruthenium Sensitizers with a Phenothiazine Conjugated Bipyridyl Ligand for High-Efficiency Dye-Sensitized Solar Cells

机译:新型噻吩类增敏剂与吩噻嗪共轭联吡啶配体,用于高效染料敏化太阳能电池

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Two efficient ruthenium sensitizers with a phenothiazine-modified bipyridine as an ancillary ligand, coded SCZ-1 and SCZ-2, have been developed as dyes in dye-sensitized solar cells (DSSCs). Both sensitizers exhibit low-energy metal-to-ligand charge transfer (MLCT) bands centered at 539 nm with high molar extinction coefficients of 1.77 x 10(4) M-1 cm(-1) for SCZ-1 and 1.66 X 10(4) M-1 cm(-1) for SCZ-2, which are significantly higher than the corresponding value for the reference N719 (1.27 x 10(4) M-1 cm(-1)) indicating that the light-harvesting capacity of ruthenium sensitizers can be reinforced by introducing phenothiazine moieties into the bipyridine ligand. Under AM 1.5G irradiation (100 mW cm(-2)), SCZ-1 and SCZ-2 sensitized DSSC devices show impressive power conversion efficiencies (PCE) up to 10.4% by using of iodide-based electrolytes, which exceeds that of N719 (9.9%) under the same conditions. Both of the open circuit voltage (V-OC) and fill factor (FF) of SCZ-sensitized solar cells approximate to those of N719-sensitized cell. The relatively higher efficiencies of the SCZ-sensitized cells than that of N719-sensitized cell come from their higher short-circuit photocurrent density (J(SC)), which may be mainly attributed to the high absorption coefficient. The absorption spectrum and device efficiency of SCZ-1 are both quite close to those of SCZ-2, suggesting that the difference in alkyl chains on the N atom of phenothiazine is not a decisive factor in affecting the photovoltaic performance of dyes.
机译:已经开发出两种有效的钌敏化剂,它们分别被吩噻嗪改性的联吡啶作为辅助配体,其编码为SCZ-1和SCZ-2,作为染料敏化太阳能电池(DSSC)中的染料。两种敏化剂均以539 nm为中心显示低能金属-配体电荷转移(MLCT)带,对于SCZ-1和1.66 X 10(1.76 x 10(4)M-1 cm(-1)具有较高的摩尔消光系数。 4)SCZ-2的M-1 cm(-1),明显高于参考N719的相应值(1.27 x 10(4)M-1 cm(-1)),表明光收集能力可以通过将吩噻嗪部分引入联吡啶配体中来增强钌敏化剂的含量。在AM 1.5G辐照下(100 mW cm(-2)),SCZ-1和SCZ-2敏化的DSSC器件通过使用碘化物基电解质显示出令人印象深刻的功率转换效率(PCE)高达10.4%,超过了N719 (9.9%)在相同条件下。 SCZ敏感的太阳能电池的开路电压(V-OC)和填充因数(FF)均近似于N719敏感的电池。 SCZ敏感电池比N719敏感电池具有更高的效率,这归因于其较高的短路光电流密度(J(SC)),这可能主要归因于其高吸收系数。 SCZ-1的吸收光谱和器件效率都非常接近SCZ-2,这表明吩噻嗪N原子上烷基链的差异不是影响染料光伏性能的决定性因素。

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