Surface design in solid-state dye sensitized solar cells: effects of zwitterionic co-adsorbents on photovoltaic performance

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Abstract

In solid-state dye sensitized solar cells (SSDSCs) charge recombination at the dye-hole transporting material interface plays a critical role in the cell efficiency. For the first time we report on the influence of dipolar coadsorbents on the photovoltaic performance of sensitized hetero-junction solar cells. In the present study, we investigated the effect of two zwitterionic butyric acid derivatives differing only in the polar moiety attached to their common 4 carbon-chain acid, i.e., 4-guanidinobutyric acid (GBA) and 4-aminobutyric acid (ABA). These two molecules were implemented as coadsorbents in conjunction with Z907Na dye on the SSDSC. It was found that a Z907Na/GBA dye/co-adsorbent combination increases both the open circuit voltage (V oc) and short-circuit current density ( Jsc) as compared to using Z907Na dye alone. The Z907Na/ABA dye/co-adsorbent combination increases the Jsc. Impedance and transient photovoltage investigations elucidate the cause of these remarkable observations. ©2009 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

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Wang, M., Grätzel, C., Moon, S. J., Humphry-Baker, R., Rossier-Iten, N., Zakeeruddin, S. M., & Grätzel, M. (2009). Surface design in solid-state dye sensitized solar cells: effects of zwitterionic co-adsorbents on photovoltaic performance. Advanced Functional Materials, 19(13), 2163–2172. https://doi.org/10.1002/adfm.200900246

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