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. 2023 Jan 13;11(24):13039. doi: 10.1039/d3ta90009f

Correction: The role of ion solvation in lithium mediated nitrogen reduction

O Westhead a,b, M Spry a, A Bagger c,d, Z Shen a, H Yadegari a, S Favero d, R Tort d, M Titirici d,e, M P Ryan a,e, R Jervis e,f, Y Katayama g, A Aguadero a,e,h, A Regoutz i, A Grimaud b,j,k,, I E L Stephens a,e,
PMCID: PMC10281331  PMID: 37346741

Abstract

Correction for ‘The role of ion solvation in lithium mediated nitrogen reduction’ by O. Westhead et al., J. Mater. Chem. A, 2023, https://doi.org/10.1039/D2TA07686A.


The authors regret an error in their calculation of the yield rate in Fig. 1b. Due to an error with the unit conversion the peak yield rate at 0.6 M LiClO4 was incorrectly given as 60 ± 3 nmol cm−2 s−1 (n = 3). The corrected yield rate is 0.53 ± 0.04 nmol cm−2 s−1 (n = 3) and the corrected version of Fig. 1b is provided herein.

Fig. 1. (b) The change in faradaic efficiency and yield rate with LiClO4 concentration (n = 3 separate experiments, error bar is standard error in the mean) for a chronopotentiometry experiment at an applied constant current of −2 mA cm−2 until −10C is passed.

Fig. 1

An independent expert reviewed the data provided by the authors and concluded that it does not change the discussion or conclusions presented in the article.

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

Supplementary Material


Articles from Journal of Materials Chemistry. a are provided here courtesy of Royal Society of Chemistry

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