Cobalt-based electrolytes for efficient flexible dye-sensitized solar cells

Authors
Kim, J.Lee, H.Kim, D.Y.Kim, S.Seo, Y.
Issue Date
2019-02
Publisher
Materials Research Society
Citation
MRS Advances, v.4, no.8, pp.481 - 489
Abstract
We have developed new flexible dye-sensitized solar cells (DSSCs) comprising organic dye (JH-1), cobalt redox electrolyte and hierarchically structured TiO2 (HS-TiO2) photoelectrode prepared using an electrostatic spray method. The performance of JH-1 sensitized flexible DSSC with a cobalt redox electrolyte was compared with those of N719-based DSSC and DSSC with I-/I3- redox electrolyte. As a result, JH-1 sensitized flexible DSSC with [Co(III/II)(bpy-pz)3](PF6)3/2 redox system exhibited a high photocurrent density of 9.17 mA cm-2, an open circuit voltage of 0.953 V, a fill factor of 0.70, and a power conversion efficiency of 6.12% under 1 sun illumination (100 mW cm-2). The incident photon-to-current conversion efficiency was measured to explain the photocurrent generation difference by different dyes and electrolytes. The electron recombination lifetime of cells was measured by intensity-modulated photovoltage spectroscopy. Mass transport in DSSCs employing cobalt redox electrolytes was also investigated by the photocurrent transient measurements and electrochemical impedance spectroscopy (EIS) analysis. ? 2019 Materials Research Society.
Keywords
Cobalt; Conversion efficiency; Efficiency; Electrochemical impedance spectroscopy; Electrolytes; Flexible electronics; Hydraulic structures; Open circuit voltage; Photocurrents; Redox reactions; Titanium dioxide; Electron recombinations; Flexible dye sensitized solar cell; Incident photon-to-current conversion efficiencies; Intensity modulated photovoltage spectroscopies (IMVS); Photocurrent density; Photocurrent generations; Photocurrent transients; Power conversion efficiencies; Dye-sensitized solar cells; cobalt-based electrolyte; flexible; dye sensitized solar cell
ISSN
2059-8521
URI
https://pubs.kist.re.kr/handle/201004/120440
DOI
10.1557/adv.2019.126
Appears in Collections:
KIST Article > 2019
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