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Correction: A versatile strategy to fabricate MOFs/carbon material integrations and their derivatives for enhanced electrocatalysis

Xiao Maab, Xue Zhaoab, Jian Suna, Dehui Liab and Xiurong Yang*a
aState Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, Jilin, China. E-mail: xryang@ciac.ac.cn
bUniversity of the Chinese Academy of Sciences, Beijing 100049, China

Received 31st July 2017 , Accepted 31st July 2017

First published on 9th August 2017


Abstract

Correction for ‘A versatile strategy to fabricate MOFs/carbon material integrations and their derivatives for enhanced electrocatalysis’ by Xiao Ma et al., RSC Adv., 2016, 6, 7728–7735.


The authors regret that the XPS fitting results of Fig. S9 in the ESI of the original article were not adequate. The corrected re-fitted curves (Fig. S9) and corresponding assignments and content of different types of C (Table S1) are shown below. These results do not affect the original conclusions of this paper.
image file: c7ra90085f-fs9.tif
Fig. S9 High-resolution C 1s spectra of (a) ZIF-8-900 and (b) ZPC-1/1-900.
Table S1 The content of different types of N and Ca
Catalyst N1 N2 N3 N (total) C1 C2 C3 C4 C5 C (total)
a N1: pyridinic-N, N2: pyrrolic-N and N3: quaternary-N; C1: sp2 C, C2: sp3 C, C3: C–N or C–O, C4: carbonyl C[double bond, length as m-dash]O and C5: amide N–C[double bond, length as m-dash]O or carboxylic COOR.
ZPC-1/1-800 2.89 1.02 1.05 4.96 43.15 26.29 4.54 5.74 4.22 83.94
ZPC-1/1-900 1.61 0.97 1.40 3.98 48.58 15.70 11.01 9.66 4.75 89.7
ZPC-1/1-1000 0.68 0.50 0.53 1.7 35.40 27.54 13.95 9.01 6.20 92.09


The ESI for the original article has been correspondingly updated. This replaces the version originally published on 19th January 2016.

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


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