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Understanding the molecular details of photoelectrochemical water oxidation is challenging. Now, theoretical and experimental evidence suggests that the accumulation of three adjacent holes
is key to enabling the efficient oxidation of water to molecular oxygen on semiconducting oxides. Access through your institution Buy or subscribe This is a preview of subscription content,
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Purchase on SpringerLink * Instant access to full article PDF Buy now Prices may be subject to local taxes which are calculated during checkout ADDITIONAL ACCESS OPTIONS: * Log in * Learn
about institutional subscriptions * Read our FAQs * Contact customer support REFERENCES * Blakemore, J. D., Crabtree, R. H. & Brudvig, G. W. _Chem. Rev._ 115, 12974–13005 (2015). Article
CAS Google Scholar * Mesa, C. A. et al. _Nat. Chem._ 12, 82–89 (2020). Article CAS Google Scholar * Li, J. et al. _Nat. Commun._ 12, 255 (2021). Article CAS Google Scholar * Righi,
G. et al. _Nat. Catal._ https://doi.org/10.1038/s41929-022-00845-9 (2022). Article Google Scholar * Nong, H. N. et al. _Nature_ 587, 408–413 (2020). Article CAS Google Scholar *
Bozal-Ginesta, C. et al. _J. Am. Chem. Soc._ 144, 8454–8459 (2022). Article CAS Google Scholar Download references AUTHOR INFORMATION Author notes * Twitter: @Reshma_R_Rao * Twitter:
@camesaz * Twitter: @durrant_group AUTHORS AND AFFILIATIONS * Department of Materials, Imperial College London, London, UK Reshma R. Rao * Institute of Advanced Materials (INAM), Universitat
Jaume I, Castelló de la Plana, Spain Camilo A. Mesa * Department of Chemistry and Centre for Processable Electronics, Imperial College London, London, UK James R. Durrant Authors * Reshma
R. Rao View author publications You can also search for this author inPubMed Google Scholar * Camilo A. Mesa View author publications You can also search for this author inPubMed Google
Scholar * James R. Durrant View author publications You can also search for this author inPubMed Google Scholar CORRESPONDING AUTHOR Correspondence to Reshma R. Rao. ETHICS DECLARATIONS
COMPETING INTERESTS The authors declare no competing interests. RIGHTS AND PERMISSIONS Reprints and permissions ABOUT THIS ARTICLE CITE THIS ARTICLE Rao, R.R., Mesa, C.A. & Durrant, J.R.
Better together. _Nat Catal_ 5, 844–845 (2022). https://doi.org/10.1038/s41929-022-00861-9 Download citation * Published: 19 October 2022 * Issue Date: October 2022 * DOI:
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