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Physical properties of hematite -Fe2O3 thin films: Application to photoelectrochemical solar cells
作者姓名:S. S. Shinde  R. A. Bansode  C. H. Bhosale  K. Y. Rajpure
作者单位:Shivaji University;Shivaji University;Shivaji University
摘    要:The physical properties and photoelectrochemical characterization of aluminium doped hematite -Fe2O3, synthesized by spray pyrolysis, have been investigated in regard to solar energy conversion. Stable Al-doped iron (III) oxide thin films synthesized by spray pyrolysis technique reveals an oxygen deficiency and the oxide exhibits n-type conductivity confirmed by anodic photocurrent generation. The preparative parameters have been optimized to obtain good quality thin films which are uniform and well adherent to the substrate. The deposited iron oxide thin films shows the single hematite phase with polycrystalline rhombohedral crystal structure with crystallite size 20-40 nm. Optical analysis enabled to point out the increase in direct band-gap energy from 2.2 to 2.25 eV with doping concentration which is attributed to blue shift. The dielectric constant and dielectric loss are studied as a function of frequency. To understand the conduction mechanism in the films AC conductivity is measured. The conduction occurs by small polaron hopping through mixed valences Fe2+/3+ with an electron mobility 300K of 1.08 Vcm2s-1. The -Fe2O3 exhibits long term chemical stability in neutral solution and has been characterized photoelectrochemically to assess its activity as a photoanode for various electrolytes using white light to obtain I–V characteristics. The Al-doped hematite exhibited higher photocurrent response when compared with undoped films achieving power conversion efficiency of 2.37% at 10 at% Al:Fe2O3 ¬ thin films along with fill factor 0.38 in NaOH electrolyte. The flat band potential Vfb (-0.87 VSCE) is determined by extrapolating the linear part to C-2 = 0 and the slope of the Mott-Schottky plot.

关 键 词:光电化学太阳能电池  氧化铁薄膜  赤铁矿  物理性能  喷雾热分解法  氢氧化钠电解液  化学稳定性  应用

Physical properties of hematiteα-Fe2O3 thin films: application to photoelectrochemical solar cells
S. S. Shinde,R. A. Bansode,C. H. Bhosale,K. Y. Rajpure.Physical properties of hematite -Fe2O3 thin films: Application to photoelectrochemical solar cells[J].Chinese Journal of Semiconductors,2011,32(1):013001-8.
Authors:S S Shinde  R A Bansode  C H Bhosale and K Y Rajpure
Affiliation:Electrochemical Materials Laboratory, Department of Physics, Shivaji University, Kolhapur 416004, India;Electrochemical Materials Laboratory, Department of Physics, Shivaji University, Kolhapur 416004, India;Electrochemical Materials Laboratory, Department of Physics, Shivaji University, Kolhapur 416004, India;Electrochemical Materials Laboratory, Department of Physics, Shivaji University, Kolhapur 416004, India
Abstract:
Keywords:photoelectrochemical  hematite  spray  photoanode
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