Highly transparent graphene oxide composited TiO2 thin film as efficient photoanode for dye-sensitized solar cells

2021 ◽  
Author(s):  
Mrinmoy Chakraborty ◽  
Rounak Banerjee ◽  
Rabindra Nath Gayen
2020 ◽  
Vol 2020 ◽  
pp. 1-10
Author(s):  
Viet Hai Le ◽  
Thai Hoang Nguyen ◽  
Huu Hieu Nguyen ◽  
Le Thanh Nguyen Huynh ◽  
An Le Vo ◽  
...  

A platinum-reduced graphene oxide thin film composite (Pt@rGO, 100 nm) was prepared on a fluorine-doped tin oxide- (FTO-) coated glass substrate by a screen printing method using a Pt@rGO screen printing paste (0.12% Pt; Pt/rGO=1.5 w/w). The as-prepared electrode (denoted as Pt@rGO/FTO) was used as the cathode for the assembly of dye-sensitized solar cells (DSSCs). It showed a well-dispersed and high loading of Pt on rGO surface with a particle size distributed around 10 nm. The redox behavior of ferrocene was performed at Pt/FTO, Pt@rGO/FTO, and rGO/FTO electrodes by a cyclic voltammetry (CV) method. The kinetic parameters, in particular, the standard reduction potential (E0, V), the transfer coefficient (α), the heterogeneous rate constant (k0, cm·s-1), and the diffusion coefficient (D, cm2 s-1), were determined by CV data treatment using convolution-deconvolution and fitting methods. The values of E0, α, k0, and D at Pt@rGO/FTO electrode were, respectively, 326 mV, 0.471, 3.33 cm·s-1, and 4.19 cm2·s-1, equivalent to those of Pt/FTO electrode (340 mV, 0.474, 3.18 cm·s-1, and 4.19 cm2·s-1). The Pt@rGO/FTO electrode exhibited excellent electrocatalytic activity compared to that of Pt thin film (Pt/FTO electrode) prepared from Pt commercial paste. The heterogeneous electron transfer rate constant k0 (cm·s-1) for I3-/I- at Pt@rGO/FTO is 1.3 times faster than that at Pt/FTO. The energy conversion efficiency of the DSSCs assembled from Pt@rGO-DSSC cathode reached 7.0%, an increase of 20.7% over the commercial Pt-based cathode (Pt-DSSC, 5.8%). The rGO component in the Pt@rGO composite plays two important roles: (i) facilitating the electron transfer between Pt NPs catalyst and the FTO substrate via the bandgap effect and (ii) the enlargement catalytic surface area of Pt NPs via the loading effect. The rGO material has, therefore, potential to replace the Pt content and improve the performance of the DSSC device.


2016 ◽  
Vol 21 (3) ◽  
pp. 891-903 ◽  
Author(s):  
Ramamoorthy Raja ◽  
Maheswari Govindaraj ◽  
Maggie Dayana Antony ◽  
Karthika Krishnan ◽  
Eswaramoorthi Velusamy ◽  
...  

2011 ◽  
Vol 347-353 ◽  
pp. 137-141 ◽  
Author(s):  
Chen Wu ◽  
Qing Xin Wu ◽  
Wei Yuan Chen

The use of colloidal solution deposition method on the preparation of the nanostructured TiO2 thin film for dye-sensitized solar cells in basic laboratory conditions was introduced. The effects of reaction temperature, time, and solvents on the film properties have been investigated. The experiments show that the use of dilute acetic acid could get a stable sol; 450°C 30 minutes in oven without preheat could have ideal TiO2 thin film.


2010 ◽  
Vol 56 (3) ◽  
pp. 813-817 ◽  
Author(s):  
Sang-Kwon Lee ◽  
M. Shaheer Akhtar ◽  
Jung-Hwan Hyung ◽  
Dong-Joo Kim ◽  
Tae-Hong Kim ◽  
...  

2007 ◽  
Vol 350 ◽  
pp. 151-154 ◽  
Author(s):  
Kunio Yamamoto ◽  
Kenji Sakai ◽  
Shinzo Yoshikado

The purpose of this study is to prepare high-quality TiO2 thin films for dye-sensitized solar cells using the electrophoresis method. A high-quality TiO2 thin film has a thickness of approximately 10 μm and no crack on the surface. In this study, TiO2 thin films were deposited by changing the configuration of electrophoresis electrodes. When electrodes were set parallel to horizontal and ITO glass substrate was set in the upper electrode, an excellent TiO2 thin film of approximately 10 μm thickness was obtained by depositing very thin TiO2 films as a buffer layer. The new film has the highest open-circuit voltage and short-circuit current density.


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