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Tuning the Optoelectronic Properties of Naphtho-Dithiophene-Based A-D-A Type Small Donor Molecules for Bulk Hetero-Junction Organic Solar Cells

机译:萘-二噻吩基A-D-A型小供体分子在块状异质结有机太阳能电池中的光电性能研究

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摘要

Four acceptor-donor-acceptor (A-D-A) type small molecules using naphtho-dithiophene as central building block, trithiophene as -bridges, malononitrile and 2-Thioxo-thiazolidin-4-one as end acceptor groups were designed by using density functional theory (DFT) and investigated as donor materials for organic solar cells (OSCs). The effects of end acceptor groups on absorption, charge transport, morphology, energy level and photovoltaic properties of the molecules were investigated and compared with reference molecule (R1= NDTP-CNCOO). These designed molecules showed relatively low HOMO levels of -5.46 to -5.56eV, strong absorption between 440-650nm by using chloroform as solvent. The designed donor molecules have an excellent electron mobility from 0.0161 to 0.0201V, hole mobility from 0.0275 to 0.0307V and open circuit voltage (Voc) from 1.76 to 1.86V. This study revealed that the designed donor materials are suitable and recommended for high performance organic solar cell devices.
机译:利用密度泛函理论(DFT)设计了以萘-二噻吩为中心构件、三噻吩为桥、丙二腈和2-硫代噻唑烷-4-酮作为末端受体基团的4种受体-供体-受体(A-D-A)型小分子,并研究了作为有机太阳能电池(OSCs)供体材料的研究。研究了末端受体基团对分子吸收、电荷传输、形貌、能级和光伏性能的影响,并与参比分子(R1= NDTP-CNCOO)进行了比较。这些设计的分子表现出相对较低的HOMO水平,为-5.46至-5.56eV,使用氯仿作为溶剂,在440-650nm之间具有很强的吸收性。所设计的供体分子在0.0161至0.0201V范围内具有出色的电子迁移率,在0.0275至0.0307V范围内具有空穴迁移率,开路电压(Voc)为1.76至1.86V。本研究表明,所设计的供体材料适用于并推荐用于高性能有机太阳能电池器件。

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