Photoelectrochemical Properties of α-PbO Films Prepared by Spray Pyrolysis
Thin films of photoactive α-PbO have been prepared on fluorine doped tin oxide substrates using spray pyrolysis in the range of 380°C to 470°C. SEM showed the formation of interconnected PbO grains with increase in grain size at elevated temperature. The Raman peak at 147 cm−1 shows the formation of...
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Published in | Journal of the Electrochemical Society Vol. 166; no. 14; pp. H698 - H703 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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The Electrochemical Society
2019
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Abstract | Thin films of photoactive α-PbO have been prepared on fluorine doped tin oxide substrates using spray pyrolysis in the range of 380°C to 470°C. SEM showed the formation of interconnected PbO grains with increase in grain size at elevated temperature. The Raman peak at 147 cm−1 shows the formation of phase pure α-PbO. XPS indicates the phase purity of α-PbO as well as its stoichiometric nature. Photoelectrochemical studies of as-deposited α-PbO in 0.1 M potassium ferrocyanide (K4Fe(CN)6) or potassium iodide (KI) at pH 9.2 under visible light irradiation showed photoanodic and photocathodic current, indicating nearly intrinsic behavior. Photocurrent spectra showed the presence of a semiconductor with an indirect bandgap of 1.9 eV. Doping by inducing oxygen deficiency through annealing in hydrogen and addition of 2 at. % In, shifted the onset potential to more negative values (down to −0.5 vs. Hg/HgO) in KI, indicating successful conversion into n-type semiconducting material. The In doped hydrogen annealed α-PbO shows a flatband potential of −0.58 V vs. Hg/HgO. The IPCE (incident photon to current conversion efficiency) in KI electrolyte was found to be 0.016 in the plateau region (0.6 V vs. Hg/HgO) at an incident wavelength of 532 nm. |
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AbstractList | Thin films of photoactive α-PbO have been prepared on fluorine doped tin oxide substrates using spray pyrolysis in the range of 380°C to 470°C. SEM showed the formation of interconnected PbO grains with increase in grain size at elevated temperature. The Raman peak at 147 cm−1 shows the formation of phase pure α-PbO. XPS indicates the phase purity of α-PbO as well as its stoichiometric nature. Photoelectrochemical studies of as-deposited α-PbO in 0.1 M potassium ferrocyanide (K4Fe(CN)6) or potassium iodide (KI) at pH 9.2 under visible light irradiation showed photoanodic and photocathodic current, indicating nearly intrinsic behavior. Photocurrent spectra showed the presence of a semiconductor with an indirect bandgap of 1.9 eV. Doping by inducing oxygen deficiency through annealing in hydrogen and addition of 2 at. % In, shifted the onset potential to more negative values (down to −0.5 vs. Hg/HgO) in KI, indicating successful conversion into n-type semiconducting material. The In doped hydrogen annealed α-PbO shows a flatband potential of −0.58 V vs. Hg/HgO. The IPCE (incident photon to current conversion efficiency) in KI electrolyte was found to be 0.016 in the plateau region (0.6 V vs. Hg/HgO) at an incident wavelength of 532 nm. |
Author | Neumann-Spallart, Michael Bhagat, Dharini Waldiya, Manmohansingh Mukhopadhyay, Indrajit |
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CitedBy_id | crossref_primary_10_1016_j_ceramint_2020_02_089 crossref_primary_10_1016_j_jics_2023_101101 crossref_primary_10_1021_acs_langmuir_3c01158 crossref_primary_10_1007_s12633_023_02301_0 |
Cites_doi | 10.1051/epjap/2018180263 10.2138/am-2000-0416 10.1149/1.2133105 10.1016/0013-4686(88)80044-6 10.1016/0368-2048(82)85043-3 10.1016/S0013-4686(01)00512-6 10.1007/BF02352902 10.1149/1.2133269 10.1088/0953-8984/25/47/475801 10.1021/j100101a033 10.1016/0022-0728(95)04142-B 10.1016/S1353-4858(15)70009-7 10.1016/0022-0728(93)03074-Y 10.1149/1.2100576 10.1016/0022-0728(94)87183-3 10.1116/1.1410948 10.1063/1.1708890 10.1016/0022-0728(91)87014-U 10.1016/0022-0728(93)80047-L 10.62226/ijarst20140181 10.1021/j150670a038 10.1063/1.112697 |
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