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首页> 外文期刊>Applied Organometallic Chemistry >Geometrical structure, electronic and nonlinear optical properties of square-planar heteroleptic complexes containing bypridine and pyrazine dithiolate derivatives as dye-sensitized solar cell: A DFT study
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Geometrical structure, electronic and nonlinear optical properties of square-planar heteroleptic complexes containing bypridine and pyrazine dithiolate derivatives as dye-sensitized solar cell: A DFT study

机译:含有丙啶和吡嗪二硫酸酯衍生物的方形平面异形络合物的几何结构,电子和非线性光学性能作为染料敏化太阳能电池:DFT研究

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摘要

The structural stability, optoelectronic and nonlinear optical (NLO) properties of the designed heteroleptic complexes [M (diimine)(dithiolate)] {M = Ni, Pd and Pt; diimine = 2,2 '-bipyridine (bpy); dithiolate = pyrazine-2,3-dithiolate (pdt), uinoxaline-2,3-dithiolate (qdt) and 2,5-dicyano-2,3-dithiolatepyrazine (dcdmp)} were determined by means of the density functional theory (DFT) method and time-dependent-DFT calculations. Natural bond orbital analyses are also performed for scrutinizing the structural properties of the considered heteroleptic complexes. This study compared the sensitization properties of all complexes in terms of their electronic properties, such as molecular orbital distribution, gap energy (E-g), absorbed wavelength (lambda(max)), light-harvesting efficiency (LHE), charge transfer descriptors, dipole moment (mu), polarizability (alpha) and first hyperpolarizability (beta(0)). Based on the obtained results, it can be induced that the change of metal center and dithiolate ligands plays a key role in tuning optoelectronic properties, especially the LHE and hyperpolarizability. Also the results reveal that Pt as metal center with qdt ligand considerably increases their electronic and NLO properties. Moreover, the thermodynamic analysis showed that the formation of these complexes is exothermic, and the synthesis of all considered complexes will be possible at 298 K and 1 atm. To sum up, it seems that these designed complexes could be introduced as promising new electro-optical materials.
机译:设计的异络合物的结构稳定性,光电和非线性光学(NLO)性质[M(二亚胺)(二亚胺)] {M = Ni,Pd和Pt;二亚胺= 2,2'-biphyridine(BPY);通过密度函数理论(DFT )方法和时间依赖于DFT计算。还进行天然键分析,用于仔细检查所考虑的异致络合物的结构性质。本研究比较了所有复合物的敏化性能,即它们的电子性质,例如分子轨道分布,间隙能量(例如),吸收波长(Lambda(Max)),光收获效率(LHE),电荷转移描述符,偶极子时刻(mu),极化性(α)和第一个超极化(β(0))。基于所得的结果,可以诱导金属中心和二硫酸盐配体的变化在调整光电性质中起着关键作用,尤其是LHE和高分子化。结果结果表明,具有QDT配体的金属中心的PT显着增加了它们的电子和NLO性能。此外,热力学分析表明,这些配合物的形成是放热的,并且所有所考虑的复合物的合成将在298k和1atm中进行。总而言之,似乎可以引入这些设计的复合物作为有前途的新型电光材料。

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