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  • Enhancing performance of P3HT:TiO₂ solar cells using doped and surface modified TiO₂ nanorods.

Enhancing performance of P3HT:TiO₂ solar cells using doped and surface modified TiO₂ nanorods.

Journal of colloid and interface science (2015-03-10)
Yu-Chieh Tu, Herman Lim, Chun-Yu Chang, Jing-Jong Shyue, Wei-Fang Su
ABSTRACT

Here we demonstrated an approach to increase performance of P3HT:TiO2 solar cell either by electron deficient boron or electron rich bismuth doping into TiO2 nanorods. The B doping increases the absorption, crystallinity and electron mobility of TiO2 nanorods. The Bi-doped TiO2 has higher J(sc) as compared with B-doped TiO2, mainly due to the improvement of electron density and increased absorption of TiO2 nanorods. The devices were fabricated from TiO2 nanorods being surface modified by organic dye W-4. The dye facilitates the bandgap alignment and compatibility between TiO2 and P3HT. The power conversion efficiency of solar cell has been increased by 1.33 times and 1.30 times for Bi-doped TiO2 and B-doped TiO2, respectively, as compared with that of as-synthesized TiO2. The results suggest the optical and electronic properties of TiO2 can be tuned by various dopants to enhance the device performance.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Boron, crystalline, −60 mesh, 99% trace metals basis
Sigma-Aldrich
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Titanium(IV) isopropoxide, 97%
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Methanol, suitable for NMR (reference standard)
Boron, monofilament, 50m, diameter 0.1mm
Boron, monofilament, 20m, diameter 0.2mm
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Boron, monofilament, 10m, diameter 0.1mm
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Titanium(IV) isopropoxide, ≥97.0%
Boron, monofilament, 5m, diameter 0.1mm
Boron, monofilament, 200m, diameter 0.1mm
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Boron, monofilament, 10m, diameter 0.2mm
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