| Literature DB >> 19330101 |
Young-Keun Kim1,2, Hyo-Jin Kang1, Young-Wook Jang1,2, Su-Bin Lee1, Seung-Min Lee1, Ki-Suck Jung1,3, Jin-Kook Lee1, Mi-Ra Kim1.
Abstract
We have synthesized soluble TiOPc derivatives containing alkoxy groups for use as additives in dye-sensitized solar cells (DSSCs). The DSSC devices containing these TiOPc derivatives exhibited short-circuit current densities of 8.49~10.04 mA/cm(2) and power conversion efficiencies of 2.73~3.62 % under AM 1.5 illumination and 100 mW/cm(2) irradiation.Entities:
Keywords: Dye-sensitized solar cell; Polymer electrolyte; Titanyl phthalocyanine (TiOPc)
Year: 2008 PMID: 19330101 PMCID: PMC2635652 DOI: 10.3390/ijms9122745
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 6.208
Solubility of TiOPc, 3a, and 3b.
| Compounds | TiOPc | 3a | 3b |
|---|---|---|---|
| CHCl2 | I | S | S |
| Chlorobenzene | I | S | S |
| Toluene | I | S | S |
| Acetone | I | I | I |
| Methanol | I | I | I |
| DMF | I | I | I |
| THF | I | P (17 wt%) | P (26 wt%) |
Solubility in 100 mg/mL
S = soluble, P = partially soluble, I = insoluble
Figure 1.Fluorescence (solid line) and absorption (dashed line) spectra of (A) 3a and (B) 3b.
XRD data 2 theta angle and relative intensity of 3a and 3b.
| Compounds | XRD data 2 theta angle (dA) | Relative intensity (%) |
|---|---|---|
| 10.94 (8.08) | 73 | |
| 11.64 (7.59) | 79 | |
| 17.30 (5.12) | 25 | |
| 17.92 (4.94) | 31 | |
| 19.34 (4.58) | 84 | |
| 20.46 (4.34) | 37 | |
| 22.50 (3.95) | 28 | |
| 22.84 (3.89) | 38 | |
| 23.50 (3.78) | 58 | |
| 24.38 (3.64) | 100 | |
| 26.60 (3.35)
| 38
| |
| 11.32 (7.81) | 83 | |
| 13.22 (6.69) | 41 | |
| 16.82 (5.27) | 38 | |
| 18.04 (4.91) | 33 | |
| 18.48 (4.80) | 96 | |
| 19.76 (4.49) | 63 | |
| 20.14 (4.41) | 77 | |
| 21.28 (4.18) | 27 | |
| 22.06 (4.03) | 49 | |
| 23.00 (3.87) | 79 | |
| 23.64 (3.76) | 39 | |
| 24.86 (3.57) | 27 | |
| 25.98 (3.43) | 100 |
Figure 2.TEM images of 3a (A) and 3b (B).
Figure 3.AFM images of 3a (A) and 3b (B); image sizes are 3 μm × 3 μm.
Figure 4.TGA curves of 3a and 3b.
Figure 5.DSC curves of 3a and 3b.
Figure 6.I–V curves of FTO/TiO2/Dye/Electrolyte/Pt devices using 3a, 3a with PEG, 3b, 3b with PEG, and PEG under AM 1.5 illumination; light intensity: 100 mW/cm2; active area: 0.25 cm2; with mask.
The photovoltaic Performances of FTO/TiO2/Dye/Electrolyte/Pt Devices Using 3a, 3a with PEG, 3b, and 3b with PEG under AM 1.5 Illumination.
| Voc | Jsc | FF | Efficiency (%) | |
|---|---|---|---|---|
| 0.61 | 8.49 | 0.53 | 2.73 | |
| 0.65 | 9.84 | 0.54 | 3.49 | |
| 0.61 | 10.02 | 0.53 | 3.19 | |
| 0.66 | 10.04 | 0.54 | 3.62 | |
| PEG | 0.67 | 8.98 | 0.49 | 2.94 |
Voc(V): Open circuit voltage.
Jsc(mA/cm2): Short circuit current density.
FF: Fill factor.
Compound : PEG = 1.7 (wt%).
Figure 7.The structure of FTO/TiO2/N3 Dye/Electrolyte/Pt device using 3a and 3b.