Literature DB >> 29057752

Ab initio simulations of water splitting on hematite.

Nicola Seriani1.   

Abstract

In recent years, hematite has attracted great interest as a photocatalyst for water splitting, but many questions remain unanswered about the mechanisms and the main limiting factors. For this reason, density functional theory has been used to understand the optical, electronic and chemical properties of this material at an atomistic level. Bulk doping can be used to reduce the band gap, and to increase photoabsorption and charge mobility. Charge transport takes place through adiabatic polaron hopping. The stable (0 0 0 1) surface has a stoichiometric termination when exposed to oxygen, it becomes hydroxylated in water, and it has an oxygen-rich termination under illumination in a photoelectrochemical setup. On the oxygen-rich termination, surface states are present that might act as recombination centres for electrons and holes. On the contrary, on the hydroxylated termination surface states appear only on reaction intermediates. The intrinsic surface states disappear in the presence of an overlayer of gallium oxide. The reaction of water oxidation is assumed to proceed by four proton-coupled electron transfers and it is shown to involve a nucleophilic attack with the formation of an OOH group. Calculated overpotentials are in the range of 0.5-0.6 V. Open questions and future research directions are briefly discussed.

Entities:  

Year:  2017        PMID: 29057752     DOI: 10.1088/1361-648X/aa84d9

Source DB:  PubMed          Journal:  J Phys Condens Matter        ISSN: 0953-8984            Impact factor:   2.333


  3 in total

1.  Multihole water oxidation catalysis on haematite photoanodes revealed by operando spectroelectrochemistry and DFT.

Authors:  Camilo A Mesa; Laia Francàs; Ke R Yang; Pablo Garrido-Barros; Ernest Pastor; Yimeng Ma; Andreas Kafizas; Timothy E Rosser; Matthew T Mayer; Erwin Reisner; Michael Grätzel; Victor S Batista; James R Durrant
Journal:  Nat Chem       Date:  2019-10-21       Impact factor: 24.427

2.  Characterization of peroxo reaction intermediates in the water oxidation process on hematite surfaces.

Authors:  Lodvert Tchibota Poaty; Kanchan Ulman; Nicola Seriani; Bernard M'Passi-Mabiala; Ralph Gebauer
Journal:  J Mol Model       Date:  2018-09-18       Impact factor: 1.810

3.  Non-redox doping boosts oxygen evolution electrocatalysis on hematite.

Authors:  Huu Chuong Nguyën; Felipe Andrés Garcés-Pineda; Mabel de Fez-Febré; José Ramón Galán-Mascarós; Núria López
Journal:  Chem Sci       Date:  2020-01-30       Impact factor: 9.825

  3 in total

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