Javascript must be enabled to continue!
Modular TiO2‐Squaraine Dyes/Electrolyte Interface for Dye‐Sensitized Solar Cells with Cobalt Electrolyte
View through CrossRef
AbstractStrategies to diminish both charge recombination and aggregation of dyes on the photoanode by functionalizing the sensitizer with alkyl groups is the best approach to achieve high dye‐sensitized solar cell (DSSC) efficiency. Development of such a photoanode with NIR‐active dyes which is compatible with a cobalt electrolyte is important to enhance the photovoltaic performance. In this report, alkyl‐group‐wrapped donor‐acceptor‐donor (D‐A‐D) based unsymmetrical squaraine dyes have been used for DSSC device characterization with a cobalt electrolyte. Surface passivation of photoanode was varied systematically by the extent of functionalization with alkyl groups to avoid charge recombination. DSSC device performance of 5.92 % was achieved for an alkyl‐group‐wrapped squaraine dye with a cobalt electrolyte. Hence, appending the alkyl groups on the donor unit of squaraine dyes helps passivating the photoanode, whereas introducing hydrophilic groups provides a leaky surface where oxidized electrolyte species reach the titanium‐metal‐oxide surface which promotes the charge recombination process.
Title: Modular TiO2‐Squaraine Dyes/Electrolyte Interface for Dye‐Sensitized Solar Cells with Cobalt Electrolyte
Description:
AbstractStrategies to diminish both charge recombination and aggregation of dyes on the photoanode by functionalizing the sensitizer with alkyl groups is the best approach to achieve high dye‐sensitized solar cell (DSSC) efficiency.
Development of such a photoanode with NIR‐active dyes which is compatible with a cobalt electrolyte is important to enhance the photovoltaic performance.
In this report, alkyl‐group‐wrapped donor‐acceptor‐donor (D‐A‐D) based unsymmetrical squaraine dyes have been used for DSSC device characterization with a cobalt electrolyte.
Surface passivation of photoanode was varied systematically by the extent of functionalization with alkyl groups to avoid charge recombination.
DSSC device performance of 5.
92 % was achieved for an alkyl‐group‐wrapped squaraine dye with a cobalt electrolyte.
Hence, appending the alkyl groups on the donor unit of squaraine dyes helps passivating the photoanode, whereas introducing hydrophilic groups provides a leaky surface where oxidized electrolyte species reach the titanium‐metal‐oxide surface which promotes the charge recombination process.
Related Results
Studies of Dye-Titania Interactions in Dye-sensitised Solar Cells
Studies of Dye-Titania Interactions in Dye-sensitised Solar Cells
This work details the synthesis of several bespoke materials to derivatise the surface of titania (TiO2) in order to obtain greater understanding of the sensitisation process in dy...
TiO2-based heterostructure photocatalysts for enhanced hydrogen production
TiO2-based heterostructure photocatalysts for enhanced hydrogen production
The photocatalytic production of hydrogen from water and biomass derivatives such as ethanol, glycerol and sugars is a highly attractive strategy to generate environmentally benign...
Mixed Dyes for Dye-sensitized Solar Cells Applications
Mixed Dyes for Dye-sensitized Solar Cells Applications
Background:
Energy crisis is a vital issue worldwide and it will be increased tremendously
in future. Alternative energy sources have been sought for the betterment of the future w...
Synthesis and Characterization of Indolenine‐Based Squaraine Dyes and their Photophysical Properties in Polymer Thin Films
Synthesis and Characterization of Indolenine‐Based Squaraine Dyes and their Photophysical Properties in Polymer Thin Films
AbstractFour squaraine dyes bearing various N substituents with different electron‐withdrawing abilities were synthesized in this study. The effects of these substituents on the ph...
Decolorization of textile wastewater by electrooxidation process using different anode materials: Statistical optimization
Decolorization of textile wastewater by electrooxidation process using different anode materials: Statistical optimization
AbstractThe presence of reactive dyes in textile wastewater is a serious environmental concern due to their associated mutagenic and carcinogenic effects. The present study aims to...
Homo‐ and Heterodimeric Dyes for Dye‐Sensitized Solar Cells: Panchromatic Light Absorption and Modulated Open Circuit Potential
Homo‐ and Heterodimeric Dyes for Dye‐Sensitized Solar Cells: Panchromatic Light Absorption and Modulated Open Circuit Potential
AbstractThe design of dyes for panchromatic light absorption has attracted much attention in the field of dye‐sensitized solar cells (DSSCs). An approach to enhance panchromatic li...
Photocatalytic Syntheis of L-Pipecolinic Acid from L-Lysine by Hollow Core-Shell Titania Particles
Photocatalytic Syntheis of L-Pipecolinic Acid from L-Lysine by Hollow Core-Shell Titania Particles
A possible approach for photocatalytic selective organic synthesis is utilization of photocatalysts of or in defined microstructures. We have reported [1,2] fabrication of a novel...
Theoretical and experimental studies of combination of synthetic dye (indoline d131) and natural dye (lawsone) for dye sensitized solar cells applications
Theoretical and experimental studies of combination of synthetic dye (indoline d131) and natural dye (lawsone) for dye sensitized solar cells applications
Dye sensitized solar cells (DSSCs) convert visible sunlight to electricity using a wide band semiconductor. The DSSCs have attracted many researchers due to their environmental fri...

