首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Electron-Deficient Pyrimidine Adopted in Porphyrin Sensitizers: A Theoretical Interpretation of π-Spacers Leading to Highly Efficient Photo-to-Electric Conversion Performances in Dye-Sensitized Solar Cells
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Electron-Deficient Pyrimidine Adopted in Porphyrin Sensitizers: A Theoretical Interpretation of π-Spacers Leading to Highly Efficient Photo-to-Electric Conversion Performances in Dye-Sensitized Solar Cells

机译:卟啉增敏剂中所用的电子不足的嘧啶:π-间隔基的理论解释,在染料敏化太阳能电池中导致高效的光电转换性能

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摘要

A mass of porphyrin sensitizers have been designed and synthesized for dye-sensitized solar cells in previous works, and almost all of them incorporated an electron-rich system as the π-spacer. We here adopted the electron-deficient pyrimidine as an effective π-spacer and combined a cyanoacrylic acid anchoring group, as such a design yields a more bathochromic shift of the spectral absorption of the dye and results in an improved spectral overlap with the solar spectrum and an enhanced light-harvesting efficiency. The result does tally with the performance of sensitizer adsorbing on a semiconductor. From the electron density difference plots of electron transitions, we found that not all electron transitions could make for the effective electron transfer from donor to acceptor groups, which means the sensitizer performance in dye-sensitized solar cells not only relies on the extrinsic spectral absorption intensity but also depends on the intrinsic character of electron movement related to electron excitation. Moreover, the introduction of electron-deficient pyrimidine could affect the energy levels of excited molecules in solution, further affecting the kinds of electron transfer processes. We presented several novel porphyrin sensitizers for comparison on how the π-spacer and anchoring group influence the optical absorption, electron transfer processes, and regeneration of the oxidized dyes, thereby gaining potential dye-sensitized solar cells with highly efficient photo-to-electric conversion performances.
机译:在先前的工作中,已经为染料敏化的太阳能电池设计并合成了大量的卟啉敏化剂,并且几乎所有的卟啉敏化剂都包含了一个富电子体系作为π隔离剂。在这里,我们采用缺电子的嘧啶作为有效的π-间隔基,并结合了氰基丙烯酸锚定基团,因为这样的设计产生了染料光谱吸收的更红移,并改善了与太阳光谱的光谱重叠。增强了光收集效率。结果与敏化剂在半导体上的吸附性能完全吻合。从电子跃迁的电子密度差图,我们发现并不是所有的电子跃迁都能使电子从供体基团有效转移到受体基团,这意味着染料敏化太阳能电池中的敏化剂性能不仅依赖于外在光谱吸收强度而且还取决于与电子激发有关的电子运动的固有特性。此外,缺电子的嘧啶的引入可能影响溶液中受激分子的能级,从而进一步影响电子转移过程的种类。我们提出了几种新型的卟啉敏化剂,用于比较π-间隔基和锚定基团如何影响光吸收,电子转移过程和氧化染料的再生,从而获得具有潜在光电敏性的高效光电转换太阳能电池表演。

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