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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Photophysical, electrochemical and solid state properties of diketopyrrolopyrrole based molecular materials: importance of the donor group
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Photophysical, electrochemical and solid state properties of diketopyrrolopyrrole based molecular materials: importance of the donor group

机译:二酮基吡咯并吡咯基分子材料的光物理,电化学和固态性质:供体基团的重要性

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Diketopyrrolopyrrole (DPP) based molecular semiconductors have emerged as promising materials for high performance active layers in organic solar cells. It is imperative to comprehend the origin of such a property by investigating the fundamental structure property correlation. In this report we have investigated the role of the donor group in DPP based donor-acceptor-donor (D-A-D) structure to govern the solid state, photophysical and electrochemical properties. We have prepared three derivatives of DPP with varying strengths of the donor groups, such as phenyl (PDPP-Hex), thiophene (TDPP-Hex) and selenophene (SeDPP-Hex). The influence of the donor units on the solid state packing was studied by single crystal X-ray diffraction. The photophysical, electrochemical and density functional theory (DFT) results were combined to elucidate the structural and electronic properties of three DPP derivatives. We found that these DPP derivatives crystallized in the monoclinic space group PZJc and show herringbone packing in the crystal lattice. The derivatives exhibit weak π-π stacking interactions as two neighboring molecules slip away from each other with varied torsional angles at the donor units. The high torsional angle of 32° (PDPP-Hex) between the phenyl and lactam ring results in weak intramolecular interactions between the donor and acceptor, while TDPP-Hex and SeDPP-Hex show lower torsional angles of 9° and 12° with a strong overlap between the donor and acceptor units. The photophysical properties reveal that PDPP-Hex exhibits a high Stokes shift of 0.32 eV and SeDPP-Hex shows a high molar absorption co-efficient of 33 600 L mol~(-1) cm~(-1) with a low band gap of ~2.2 eV. The electrochemical studies of SeDPP-Hex indicate the pronounced effect of selenium in stabilizing the LUMO energy levels and this further emphasizes the importance of chalcogens in developing new n-type organic semiconductors for optoelectronic devices.
机译:基于二酮吡咯并吡咯(DPP)的分子半导体已成为有机太阳能电池中高性能有源层的有前途的材料。必须通过研究基本结构特性的相关性来理解这种特性的起源。在本报告中,我们研究了供体基团在基于DPP的供体-受体-供体(D-A-D)结构中的作用,以控制固态,光物理和电化学性质。我们制备了三种具有不同强度供体基团的DPP衍生物,例如苯基(PDPP-Hex),噻吩(TDPP-Hex)和硒基(SeDPP-Hex)。通过单晶X射线衍射研究了供体单元对固态堆积的影响。结合光物理,电化学和密度泛函理论(DFT)的结果来阐明三种DPP衍生物的结构和电子性质。我们发现这些DPP衍生物在单斜空间群PZJc中结晶,并在晶格中显示出人字形堆积。当两个相邻分子在施主单元处以不同的扭转角彼此滑开时,导数表现出弱的π-π堆积相互作用。苯环和内酰胺环之间的32°高扭转角(PDPP-Hex)导致供体与受体之间的分子内相互作用较弱,而TDPP-Hex和SeDPP-Hex显示出较低的9°和12°扭转角,供体和受体单元之间重叠。光物理性质表明,PDPP-Hex的斯托克斯位移为0.32 eV,SeDPP-Hex的摩尔吸收系数为33 600 L mol〜(-1)cm〜(-1),带隙低。约2.2 eV。 SeDPP-Hex的电化学研究表明,硒对稳定LUMO能级具有显着作用,这进一步强调了硫族元素在开发用于光电器件的新型n型有机半导体中的重要性。

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