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Exploring the Effect of Introducing a p-Bridge on The Efficiency of a Perylene-Brazilein Based D-D-p-A System: A Theoretical Perspective

机译:探索引入p桥对基于perylene-brazilein的d-d-d-p-a系统效率的影响:理论观点

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We report theoretical studies on some perylene based dyes for their electron transfer properties in solar cell applications. The study involves modeling of Donor-π-Donor-p-Acceptor (D-π-D-π A) systems with perylene and brazilein as the two donors, cyanoacrylic acid group as acceptor, thiophene as the π-bridge between the brazilein and acceptor and a varying π-Bridge between the two donors . The effect of introducing a π-bridge as well as varying the π-bridges on the efficiency of a perylenebrazilein based D-D-π-A framework was evaluated in terms of various opto-electronic and photovoltaic parameters affecting cell efficiency. All quantum computations were carried out using Density functional theory (DFT) using 6-311G(d, p) / LanL2DZ (for I and Ti atoms) as the basis sets and B3LYP as the functional, both in the gas phase as well as solvent phase, with Gaussian 03 set of codes. We found that the sensitizers show good optical as well as photovoltaic response. The dye molecules with benzene (PB2), pyrimidine (PB7), pyrazine (PB8) and aniline (PB9) as π-bridges exhibit better electron injection efficiencies and are hence, expected to be better sensitizers. The overall opto-electronic and transport parameters of the TiO2 - dye adsorbed systems after anchoring the dyes on the model TiO2 cluster was also studied which revealed that the dye molecules are expected to be good sensitizers.
机译:我们报告了一些关于某些基于pery的染料在太阳能电池应用中的电子转移特性的理论研究。该研究涉及将供体-π-donor-p-pecceptor(D-π-d-πA)系统与佩利烯和巴西蛋白作为两个供体的系统,氰基丙烯酸群为受体,硫苯在brazilein和brazilein之间的π-桥受体和两个捐助者之间的变化π桥。根据各种光电 - 电动和光伏参数,评估了引入π桥以及改变π桥对基于perynebrazilein的D-D-D-π-A框架效率的影响。所有量子计算均使用密度函数理论(DFT)使用6-311G(D,P) / LANL2DZ(对于I和Ti原子)作为基础集和B3LYP作为功能,均在气相中以及溶剂阶段阶段,带有高斯03组代码。我们发现敏化器显示出良好的光学和光伏响应。用苯(PB2),嘧啶(PB7),吡嗪(PB8)和苯胺(PB9)(π-桥)具有更好的电子注入效率,因此是更好的敏化剂,染料分子(PB2)(PB2)(PB2)(PB7)(PB7)(PB8)(PB8)(PB9)表现出更好的。还研究了Tio2 -dye吸附系统的整体光电极和传输参数,还研究了TiO2型簇上的染料,这表明染料分子有望是良好的敏化剂。

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