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用于染料敏化太阳能电池的基于偶氮染料分子在锐钛矿型TiO表面的吸附几何结构和电子结构的密度泛函理论研究。

Density functional theory study of adsorption geometries and electronic structures of azo-dye-based molecules on anatase TiO surface for dye-sensitized solar cell applications.

作者信息

Prajongtat Pongthep, Suramitr Songwut, Nokbin Somkiat, Nakajima Koichi, Mitsuke Koichiro, Hannongbua Supa

机构信息

Department of Materials Science, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand.

Department of Chemistry, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand; Center for Advanced Studies in Nanotechnology for Chemical, Food and Agricultural Industries, KU Institute for Advanced Studies, Kasetsart University, Bangkok 10900, Thailand; NANOTEC-KU Center of Excellence on Nanoscale Materials Design for Green Nanotechnology, Kasetsart University, Bangkok, 10900, Thailand.

出版信息

J Mol Graph Model. 2017 Sep;76:551-561. doi: 10.1016/j.jmgm.2017.06.002. Epub 2017 Jun 11.

Abstract

Structural and electronic properties of eight isolated azo dyes (ArNNAr', where Ar and Ar' denote the aryl groups containing benzene and naphthalene skeletons, respectively) were investigated by density functional theory (DFT) based on the B3LYP/6-31G(d,p) and TD-B3LYP/6-311G(d,p) methods The effect of methanol solvent on the structural and electronic properties of the azo dyes was elucidated by employing a polarizable continuum model (PCM). Then, the azo dyes adsorbed onto the anatase TiO (101) slab surface through a carboxyl group. The geometries and electronic structures of the adsorption complexes were determined using periodic DFT based on the PWC/DNP method. The calculated adsorption energies indicate that the adsorbed dyes preferentially take configuration of the bidentate bridging rather than chelating or monodentate ester-type geometries. Furthermore, the azo compounds having two carboxyl groups are coordinated to the TiO surface more preferentially through the carboxyl group connecting to the benzene skeleton than through that connecting to the naphthalene skeleton. The dihedral angles (Φ) between the benzene- and naphthalene-skeleton moieties are smaller than 10° for the adsorbed azo compounds containing one carboxyl group. In contrast, Φ30° are obtained for the adsorbed azo compounds containing two carboxyl groups. The almost planar conformations of the former appear to strengthen both π-electrons conjugation and electronic coupling between low-lying unoccupied molecular orbitals of the azo dyes and the conduction band of TiO. On the other hand, such coupling is very weak for the latter, leading to a shift of the Fermi level of TiO in the lower-energy direction. The obtained results are useful to the design and synthesize novel azo-dye-based molecules that give rise to higher photovoltaic performances of the dye-sensitized solar cells.

摘要

基于密度泛函理论(DFT),采用B3LYP/6 - 31G(d,p)和TD - B3LYP/6 - 311G(d,p)方法研究了八种孤立偶氮染料(ArNNAr',其中Ar和Ar'分别表示含有苯环和萘环骨架的芳基)的结构和电子性质。通过使用极化连续介质模型(PCM)阐明了甲醇溶剂对偶氮染料结构和电子性质的影响。然后,偶氮染料通过羧基吸附在锐钛矿TiO(101)平板表面。基于PWC/DNP方法,使用周期性DFT确定了吸附配合物的几何结构和电子结构。计算得到的吸附能表明,吸附的染料优先采取双齿桥连构型,而非螯合或单齿酯型几何构型。此外,具有两个羧基的偶氮化合物通过连接苯环骨架的羧基比通过连接萘环骨架的羧基更优先地与TiO表面配位。对于含有一个羧基的吸附偶氮化合物,苯环和萘环骨架部分之间的二面角(Φ)小于10°。相比之下,对于含有两个羧基的吸附偶氮化合物,Φ>30°。前者几乎平面的构象似乎增强了偶氮染料的π电子共轭以及低能未占据分子轨道与TiO导带之间的电子耦合。另一方面,后者的这种耦合非常弱,导致TiO的费米能级向低能方向移动。所得结果有助于设计和合成基于偶氮染料的新型分子,从而提高染料敏化太阳能电池的光伏性能。

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