*S Supporting Information ABSTRACT: Phthalocyanines are promising photosensitizers for dye-sensitized solar cells (DSSCs). A parameter that has been problematic for a long time involves electron injection (EI) into the TiO2. The development of push−pull phthalocyanines shows great potential to improve the ratio of EI to back electron transfer (BET). We have studied the impact of the anchoring ligand on EI and BET using transient absorption. The best performing derivative, which has a dicarboxylic acid anchoring ligand (TT15, DSSC efficiency of 3.96%), shows the fastest EI. The EI process occurs via an ultrafast component (∼700 fs for all derivatives) and a slower component (5.8 ps for TT15). The ps component is considerably slower for the o...
There is great interest in synthesizing organic dyes to replace organometallic dyes as sensitizers i...
We describe a novel titanium phthalocyanine that shows no aggregation when anchored to nanocrystalli...
The attachment chemistry of the chromophore onto the semiconductor surface influences the efficiency...
Phthalocyanines are promising photosensitizers for dye-sensitized solar cells (DSSCs). A parameter t...
Phthalocyanines are promising photosensitizers for dye-sensitized solar cells (DSSCs). A parameter t...
Several zinc-based phthalocyanines have been synthesized and used in Dye-Sensitized Solar Cells (DSS...
In the field of dye-sensitized solar cells, the number of different sensitizing dyes is increasing r...
Conventional dye-sensitized solar cells (DSSCs) involving charge-transfer interfaces face charge inj...
Time-resolved photophysical and photoelectrochemical investigations have been carried out to compare...
Time-resolved photophysical and photoelectrochemical investigations have been carried out to compare...
A series of dyes based on a triphenylamine donor and a rhodanine acetic acid anchor/acceptor for sol...
High electron-injection efficiency is important for further development of dye-sensitized solar cell...
Time-resolved photophysical and photoelectrochemical investigations have been carried out to compare...
Titanium dioxide (TiO2) and zinc oxide (ZnO) semiconductors have similar band gap positions but TiO2...
A series of unsymmetrical zinc phthalocyanines bearing an anchoring carboxylic function linked to th...
There is great interest in synthesizing organic dyes to replace organometallic dyes as sensitizers i...
We describe a novel titanium phthalocyanine that shows no aggregation when anchored to nanocrystalli...
The attachment chemistry of the chromophore onto the semiconductor surface influences the efficiency...
Phthalocyanines are promising photosensitizers for dye-sensitized solar cells (DSSCs). A parameter t...
Phthalocyanines are promising photosensitizers for dye-sensitized solar cells (DSSCs). A parameter t...
Several zinc-based phthalocyanines have been synthesized and used in Dye-Sensitized Solar Cells (DSS...
In the field of dye-sensitized solar cells, the number of different sensitizing dyes is increasing r...
Conventional dye-sensitized solar cells (DSSCs) involving charge-transfer interfaces face charge inj...
Time-resolved photophysical and photoelectrochemical investigations have been carried out to compare...
Time-resolved photophysical and photoelectrochemical investigations have been carried out to compare...
A series of dyes based on a triphenylamine donor and a rhodanine acetic acid anchor/acceptor for sol...
High electron-injection efficiency is important for further development of dye-sensitized solar cell...
Time-resolved photophysical and photoelectrochemical investigations have been carried out to compare...
Titanium dioxide (TiO2) and zinc oxide (ZnO) semiconductors have similar band gap positions but TiO2...
A series of unsymmetrical zinc phthalocyanines bearing an anchoring carboxylic function linked to th...
There is great interest in synthesizing organic dyes to replace organometallic dyes as sensitizers i...
We describe a novel titanium phthalocyanine that shows no aggregation when anchored to nanocrystalli...
The attachment chemistry of the chromophore onto the semiconductor surface influences the efficiency...