Tuning the physical properties of organic sensitizers by replacing triphenylamine with new donors for dye sensitized solar cells-a theoretical approach
S Ramkumar, P Manidurai - Spectrochimica Acta Part A: Molecular and …, 2017 - Elsevier
S Ramkumar, P Manidurai
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2017•ElsevierNew donor molecules with low ionization potential have been theoretically designed by
replacing the benzene moieties in triphenylamine (TPA) with thiophene as well as furan. The
designed new donors also exhibited planar structure, making an angle of 120° around the
nitrogen atom that results in resonance effects through π-bonds of aryl rings. New
sensitizers have been theoretically studied using DFT and TD-DFT by adopting these
designed donors. UV–Vis absorption spectra, light harvesting ability (LHE) and electron …
replacing the benzene moieties in triphenylamine (TPA) with thiophene as well as furan. The
designed new donors also exhibited planar structure, making an angle of 120° around the
nitrogen atom that results in resonance effects through π-bonds of aryl rings. New
sensitizers have been theoretically studied using DFT and TD-DFT by adopting these
designed donors. UV–Vis absorption spectra, light harvesting ability (LHE) and electron …
Abstract
New donor molecules with low ionization potential have been theoretically designed by replacing the benzene moieties in triphenylamine (TPA) with thiophene as well as furan. The designed new donors also exhibited planar structure, making an angle of 120° around the nitrogen atom that results in resonance effects through π-bonds of aryl rings. New sensitizers have been theoretically studied using DFT and TD-DFT by adopting these designed donors. UV–Vis absorption spectra, light harvesting ability (LHE) and electron injection ability (ΔGinject) of the designed sensitizers have been calculated by taking L0 as reference. Orbital overlapping between donor and acceptor facilitates intra-molecular charge transfer, thereby increasing the interfacial electron injection from the sensitizer to the semiconductor nanoparticles. Our theoretical results demonstrate that sensitizers DTPA-AA and DFPA-AA have broader absorption and lower ΔGinject respectively compare to L0, this opens a new way for designing sensitizers for dye sensitized solar cells (DSSCs). All the dyes designed were found to be good light harvesters.
Elsevier
以上显示的是最相近的搜索结果。 查看全部搜索结果