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Correction: Anaerobic oxidation of aldehydes to carboxylic acids under hydrothermal conditions

Yiju Liao, Alexandria Aspin and Ziming Yang*
Department of Chemistry, Oakland University, Rochester, MI 48309, USA. E-mail: zimingyang@oakland.edu

Received 16th February 2023 , Accepted 16th February 2023

First published on 22nd February 2023


Abstract

Correction for ‘Anaerobic oxidation of aldehydes to carboxylic acids under hydrothermal conditions’ by Yiju Liao et al., RSC Adv., 2022, 12, 1738–1741, https://doi.org/10.1039/D1RA08444E.


The authors regret that the incorrect structure was shown for Compound 5 in Table 2. The corrected version of Table 2 is shown below.
Table 2 Investigation of substrate scope under anaerobic hydrothermal conditions of 200 °C, 15 bar after 2 h

image file: d3ra90014b-u1.tif

Comp#

image file: d3ra90014b-u2.tif

image file: d3ra90014b-u3.tif

Conversion Acid yielda
a Yield determined by gas chromatography.
1 image file: d3ra90014b-u4.tif image file: d3ra90014b-u5.tif >99% 98%
2 image file: d3ra90014b-u6.tif image file: d3ra90014b-u7.tif 83% 82%
3 image file: d3ra90014b-u8.tif image file: d3ra90014b-u9.tif 56% 47%
4 image file: d3ra90014b-u10.tif image file: d3ra90014b-u11.tif 68% 66%
5 image file: d3ra90014b-u12.tif image file: d3ra90014b-u13.tif 66% 45%
6 image file: d3ra90014b-u14.tif image file: d3ra90014b-u15.tif 55% 54%
7 image file: d3ra90014b-u16.tif image file: d3ra90014b-u17.tif 63% 46%
8 image file: d3ra90014b-u18.tif image file: d3ra90014b-u19.tif 66% 58%
9 image file: d3ra90014b-u20.tif image file: d3ra90014b-u21.tif 48% 30%
10 image file: d3ra90014b-u22.tif image file: d3ra90014b-u23.tif 42% 41%


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


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