2009
DOI: 10.1021/jp811100r
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Photoelectrochemical Properties of Crystalline Perovskite Lanthanum Titanium Oxynitride Films under Visible Light

Abstract: International audienc

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Cited by 124 publications
(120 citation statements)
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“…It should be noted that only one hole in a LaTiO 2 N particle can shift E Fp significantly positively to a potential 0.36 V more negative than E V from eq 8. Since E V of LaTiO 2 N is 0.77 V more positive than the O 2 evolution potential, 39 E Fp of a LaTiO 2 N particle that contains one hole is more positive than the O 2 evolution potential by 0.41 V. On the other hand, E C of LaTiO 2 N is 0.1 V more negative than the hydrogen evolution potential. 39 Accordingly, LaTiO 2 N is thermodynamically expected to split water into H 2 and O 2 under weak excitation.…”
Section: Quasi-fermi Levels Of Photocatalyst Particles Under Light Irmentioning
confidence: 93%
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“…It should be noted that only one hole in a LaTiO 2 N particle can shift E Fp significantly positively to a potential 0.36 V more negative than E V from eq 8. Since E V of LaTiO 2 N is 0.77 V more positive than the O 2 evolution potential, 39 E Fp of a LaTiO 2 N particle that contains one hole is more positive than the O 2 evolution potential by 0.41 V. On the other hand, E C of LaTiO 2 N is 0.1 V more negative than the hydrogen evolution potential. 39 Accordingly, LaTiO 2 N is thermodynamically expected to split water into H 2 and O 2 under weak excitation.…”
Section: Quasi-fermi Levels Of Photocatalyst Particles Under Light Irmentioning
confidence: 93%
“…Since E V of LaTiO 2 N is 0.77 V more positive than the O 2 evolution potential, 39 E Fp of a LaTiO 2 N particle that contains one hole is more positive than the O 2 evolution potential by 0.41 V. On the other hand, E C of LaTiO 2 N is 0.1 V more negative than the hydrogen evolution potential. 39 Accordingly, LaTiO 2 N is thermodynamically expected to split water into H 2 and O 2 under weak excitation. However, overall water splitting on LaTiO 2 N has not yet been successfully demonstrated.…”
Section: Quasi-fermi Levels Of Photocatalyst Particles Under Light Irmentioning
confidence: 93%
“…at the semiconductor-electrolyte interface, has shown the significant impact of surface lifetimes on 25 the photocurrent for a thin-film GaN photoanode, a well-defined material with known material 26 parameters 9 . It becomes obvious from these early modelling works that the knowledge of the 27 material parameters is key for model accuracy.…”
mentioning
confidence: 99%
“…Further improvements up to a 23 photocurrent of 4.3mA/cm 2 (IPCE of 10%) were achieved by additionally reducing the doping 24 concentration and increasing the effective lifetime. 25 The numerical model developed in this work can be further used to study numerically the impact 26 of particle size on the photocurrent, which can be modified using different synthesis routes 4 , and 27 on particle density, which can vary with the deposition method of particles. Thus, design guidelines 28 on the particle arrangement and size of particle-based PEs can be determined with this model.…”
mentioning
confidence: 99%
“…Domen and co-workers demonstrated the possible application of (oxy)nitride semiconductors, such as Ta 3 N 5 [24] , SrNbO 2 N [25] , LaTiO x N y [26] , and TaON [27] , as photoanodes for water splitting by loading IrO 2 nanoparticles on their surfaces to suppress the self-oxidation of the photoanode and promote the oxidation of water. As shown in Figure 4 , the IrO 2 loading was found to greatly improve the activity and stability of these (oxy)nitride photoelectrodes during photoirradiation.…”
Section: Oxygen Evolution Catalyst (Oec) Loadingmentioning
confidence: 99%