2014•Advances in physics research/Advances in Physics ResearchOpen access

Transmittance Simulation of Surface Textured Fluorine Doped Tin Oxide (FTO) for Dye Sensitized Solar Cell (DSSC) Application

Kusumandari Kusumandari, Risa Suryana

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Abstract

The aim of this research is to simulate the transmittance of fluorine doped tin oxide (FTO) for dye sensitized solar cell (DSSC) application.Simulation was performed using finite difference time domain (FDTD) method based on Maxwell equation for flat and nano cone periodically surface textured of FTO.The simulation was done for 500 and 600 nm of incident plane wave wavelength.As a result, the transmittance power for nano cone surface textured is higher than flat FTO.

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The aim of this research is to simulate the transmittance of fluorine doped tin oxide (FTO) for dye sensitized solar cell (DSSC) application.Simulation was performed using finite difference time domain (FDTD) method based on Maxwell equation for flat and nano cone periodically surface textured of FTO.The simulation was done for 500 and 600 nm of incident plane wave wavelength.As a result, the transmittance power for nano cone surface textured is higher than flat FTO.

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Available abstract

The aim of this research is to simulate the transmittance of fluorine doped tin oxide (FTO) for dye sensitized solar cell (DSSC) application.Simulation was performed using finite difference time domain (FDTD) method based on Maxwell equation for flat and nano cone periodically surface textured of FTO.The simulation was done for 500 and 600 nm of incident plane wave wavelength.As a result, the transmittance power for nano cone surface textured is higher than flat FTO.

Key concepts: Dye-sensitized solar cell, Tin oxide, Transmittance, Materials science, Finite-difference time-domain method, Solar cell, Doping, Optoelectronics

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Transmittance Simulation of Surface Textured Fluorine Doped Tin Oxide (FTO) for Dye Sensitized Solar Cell (DSSC) Application — Research Paper | ScholarLens