Page 25 - Read Online
P. 25

Liu et al. Microstructures 2023;3:2023001  https://dx.doi.org/10.20517/microstructures.2022.23  Page 21 of 21

               96.       Wijayantha  KG,  Saremi-Yarahmadi  S,  Peter  LM.  Kinetics  of  oxygen  evolution  at  α-Fe2O3  photoanodes:  a  study  by
                    photoelectrochemical impedance spectroscopy. Phys Chem Chem Phys 2011;13:5264-70.  DOI  PubMed
               97.       Cummings CY, Marken F, Peter LM, Wijayantha KG, Tahir AA. New insights into water splitting at mesoporous α-Fe O  films: a
                                                                                                  2
                                                                                                    3
                    study by modulated transmittance and impedance spectroscopies. J Am Chem Soc 2012;134:1228-34.  DOI  PubMed
               98.       Peter LM, Wong LH, Abdi FF. Revealing the influence of doping and surface treatment on the surface carrier dynamics in hematite
                    nanorod photoanodes. ACS Appl Mater Interfaces 2017;9:41265-72.  DOI  PubMed
               99.       Zheng H, Lu Y, Ye KH, et al. Atomically thin photoanode of InSe/graphene heterostructure. Nat Commun 2021;12:91.  DOI
                    PubMed  PMC
               100.      Bard AJ, Faulkner LR. Scanning electrochemical microscopy, 2nd ed.; New York: Marcel Dekker. 2001.
               101.      Liu N, Qin Y, Han M, et al. Investigation of regeneration kinetics of a carbon-dot-sensitized metal oxide semiconductor with
                    scanning electrochemical microscopy. ACS Appl Energy Mater 2018;1:1483-8.  DOI
               102.      Yu Z, Huang Q, Jiang X, et al. Effect of a cocatalyst on a photoanode in water splitting: a study of scanning electrochemical
                    microscopy. Anal Chem 2021;93:12221-9.  DOI  PubMed
   20   21   22   23   24   25   26   27   28   29   30