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首页> 外文期刊>Journal of inorganic and organometallic polymers and materials >DFT and TDDFT Studies of Non-Fullerene Organometallic Based Acceptors for Organic Photovoltaics
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DFT and TDDFT Studies of Non-Fullerene Organometallic Based Acceptors for Organic Photovoltaics

机译:用于有机光伏基于非富勒烯有机金属基于富烯族有机金属的DFT和TDDFT研究

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Recently, non-fullerenes acceptor based solar cells have replaced the fullerenes based ones due to their higher enhanced photochemical and thermal stability. Hence, in this work, six molecules based on D-A and D-A-D topologies have been designed, where dipyridophenazine as acceptor (which is attached with a metal atom) is attached with triphenylamine as the donor fragment. In case of D-A topology based A1-A3 molecules, donor: acceptor ratio is 1:1 while in D-A-D type B1-B3 molecules it is 1:2. Computational analyses based on density functional and time-dependent density functional are carried out to investigate the effect of Ca, Mg, and Be metals in both topologies. Reduced orbital energy levels in all designed molecules refer to them as good acceptors in both topologies. Ca-complexed (A1 and B1) acceptors in both topologies after the optimal function have shown a smaller energy gap of 0.6 eV than those of reference R and all other designed molecules. In case of D-A-D topology, B1 showed a significant red-shift of 72 nm than that of R. While D-A topology-based A1 showed a more or less similar absorption wavelength like R. Besides, absorption peaks of Mg and Be-complexed molecules are stronger in the case of D-A-D topology. In a nutshell, this computational investigation approved these molecules as efficient and effective for non-fullerene organometallic based acceptors for organic solar cell devices.
机译:最近,由于其提高的光化学和热稳定性,因此基于非富勒烯受体的太阳能电池已经取代了基于富勒烯的富勒烯。因此,在这项工作中,设计了一种基于D-A和D-A-D拓扑的六个分子,其中双倍苯嗪作为受体(用金属原子连接)与富苯胺作为供体片段连接。在D-A拓扑的基于A1-A3分子的情况下,供体:受体比为1:1,而在D-A-D型B1-B3分子中,它为1:2。进行基于密度官能和时间依赖性密度官能的计算分析,以研究Ca,Mg和在两个拓扑中的金属的影响。所有设计的分子中的轨道能量水平降低指在两个拓扑中都将它们视为良好的受护者。在最佳函数后的两个拓扑中的Ca-复合(A1和B1)受体显示出比参考R和所有其他设计分子的较小能隙为0.6eV。在爸爸拓扑的情况下,B1显示出比R的显着的红色偏移量为72nm。而基于DA拓扑的A1显示出或多或少类似的吸收波长,如R.此外,Mg的吸收峰和被复合分子的吸收峰是在爸爸拓扑的情况下更强大。简而言之,该计算调查批准了这些分子,对有机太阳能电池装置的非富烯有机金属基于非富含子有机金属的受体有效和有效。

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