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Correction: Plasma-assisted fabrication of ultra-dispersed copper oxides in and on C-rich carbon nitride as functional composites for the oxygen evolution reaction

Mattia Benedet ab, Angelica Fasan b, Davide Barreca b, Chiara Maccato *ab, Cinzia Sada c, Silvia Maria Deambrosis b, Valentina Zin b, Francesco Montagner b, Oleg I. Lebedev d, Evgeny Modin e, Gian Andrea Rizzi ab and Alberto Gasparotto ab
aDepartment of Chemical Sciences, Padova University and INSTM, 35131 Padova, Italy. E-mail: chiara.maccato@unipd.it
bCNR-ICMATE and INSTM, 35127 Padova, Italy
cDepartment of Physics and Astronomy, Padova University and INSTM, 35131 Padova, Italy
dLaboratoire CRISMAT, UMR 6508 Normandie Université, CNRS, ENSICAEN, UNICAEN, 14050 Caen Cedex 4, France
eCIC nanoGUNE BRTA, 20018 Donostia, San Sebastian, Spain

Received 4th October 2024 , Accepted 4th October 2024

First published on 11th October 2024


Abstract

Correction for ‘Plasma-assisted fabrication of ultra-dispersed copper oxides in and on C-rich carbon nitride as functional composites for the oxygen evolution reaction’ by Mattia Benedet et al., Dalton Trans., 2024, https://doi.org/10.1039/d4dt02186j.


The authors regret the incorrect Fig. 5 was published in their original submission. The correct Fig. 5 is the following one:
image file: d4dt90176b-f5.tif
Fig. 5 (a) UPS work function determination for the indicated specimens (Wf = work function); (b) REELS spectra showing the presence of the π and π + σ plasmonic excitation typical of such composite materials. The incorporation of H atoms is evidenced by the small peak centred at ≈2 eV, while the optical band gap is estimated at ≈3.2 eV. (c) ISS spectra highlighting the different CuxO surface contents for the composite samples.

The Royal Society of Chemistry apologises for these errors and any consequent inconvenience to authors and readers.


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