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Correction

Correction: Khan et al. Anticancer Function and ROS-Mediated Multi-Targeting Anticancer Mechanisms of Copper (II) 2-hydroxy-1-naphthaldehyde Complexes. Molecules 2019, 24, 2544

State Key Laboratory for the Chemistry and Molecular Engineering of Medicinal Resources, Guangxi Normal University, Guilin 541004, China
*
Authors to whom correspondence should be addressed.
Submission received: 10 December 2020 / Accepted: 16 June 2021 / Published: 8 October 2021
Due to the previous incorrect characterization of compound C1, the authors wish to make the following corrections to this paper [1] published in Molecules.
In order to be easier for the reader to follow, a short text from the original manuscript is cited together with the respective modification.
In Section 2.1. Development and Structure of Cu2+ Complexes:
Original:
C1 was crystallized in the space group P21/n making a monoclinic structure. The molecular structure of the arrangement of the Cu (II) metal center is listed in Table 1. The Cu (II) metal center was pentacoordinate with two nitrogen atoms and an oxygen atom of the ligand and two terminal chlorine atoms. The distances of the Cu–N/O bonds ranged from 1913–2.02 Å (Table S1). The coordination of the polyhedron surrounding the Cu atom at the center could be displayed by a square pyramid, with the metal displaced from the N1/N2/O basal plane, ranging from 88–175.9° (Table S2).
This should be replaced with:
C1 was crystallized in the space group P21/n, making a monoclinic structure. The molecular structure of the arrangement of the Cu (II) metal center is listed in Table 1. The Cu (II) metal center was pentacoordinate, with two nitrogen atoms and an oxygen atom of the ligand, and one terminal chlorine atom. The distances of the Cu–N/O bonds ranged from 1.895 to 2.009 Å (Table S1). The coordination of the polyhedron surrounding the Cu atom at the center could be displayed by a square planar, with the metal displaced from the N1/N2/O basal plane, ranging from 82 to 176.7° (Table S2).
In Section 4.2.2. Synthesis of C1:
Original:
L and CuCl2 (0.5 mmol) were stirred for 1 h at 65 °C to give a clear solution and then filtered. The filtrate was kept in the air for a week, forming blue-black crystals. The crystals were directly isolated, washed three times with distilled water, and dried in a vacuum desiccator containing anhydrous CaCl2. Yield: 83%. Anal. Calc for C17H13Cl2CuN2O (395.75): C, 51.59; H, 3.31 and N, 8.68. Found: C, 51.51; H, 3.24 and N, 8.60. IR (Main Peak cm−1): 3461.33, 3090.05, 1719, 1601.92, 1344.26, 761.53, 702.21. MS m/z: 396.75 (M + H)+ (Tables S1 and S2).
This should be replaced with:
L and CuCl2 (0.5 mmol) were stirred for 1 h at 65 °C to give a clear solution and then filtered. The filtrate was kept in the air for a week, forming blue-black crystals. The crystals were directly isolated, washed three times with distilled water, and dried in a vacuum desiccator containing anhydrous CaCl2. Yield: 83%. Anal. Calc for C17H13ClCuN2O (324.03): C, 56.67; H, 3.64 and N, 7.78. Found: C, 56.61; H, 3.70 and N, 7.72. IR (Main Peak cm−1): 3461.33, 3090.05, 1719, 1601.92, 1344.26, 761.53, 702.21. MS m/z: 324.03 (M − Cl)+ (Tables S1 and S2).
The Figure 1 should be replaced with the following version:
The Table 1 should be replaced with the following version:
Table 1. Crystal data of the Cu (II) complexes (C1 and C2).
Table 1. Crystal data of the Cu (II) complexes (C1 and C2).
Identification CodeC1C2
Empirical formulaC17H13ClCuN2OC22H18BrCuN3O
Formula weight360.30483.86
Temperature/K296.15296.15
Crystal systemmonoclinicmonoclinic
Space groupP21/nP21/n
a/Å8.100(6)8.6992(9)
b/Å8.632(7)13.6084(14)
c/Å21.270(16)16.4250(18)
α/°9090
β/°100.245(12)90.070(2)
γ/°9090
Volume/Å31463.4(19)1944.4(4)
Z44
ρcalcg/cm31.63531.6527
μ(Mo-Kα) mm−11.6773.196
F(000)734.2972.6
Data/restraints/parameters3007/0/1994211/0/253
Goodness of fit on F21.0541.027
Final R indexes (I ≥ 2σ (I))R1 = 0.0421 R1 = 0.0375
wR2 = 0.1358wR2 = 0.1023
Largest diff. peak/hole /e Å-30.63/−0.690.86/−0.46
All co-authors agree with the content of this correction and wish to apologize for any inconvenience to the readers resulting from this error.

Reference

  1. Khan, M.H.; Cai, M.; Deng, J.; Yu, P.; Liang, H.; Yang, F. Anticancer Function and ROS-Mediated Multi-Targeting Anticancer Mechanisms of Copper (II) 2-hydroxy-1-naphthaldehyde Complexes. Molecules 2019, 24, 2544. [Google Scholar] [CrossRef] [PubMed] [Green Version]
Figure 1. (A) Chemical structures of Cu2+ compounds. (B) Synthetic routes of Cu2+ compounds (C1 and C2).
Figure 1. (A) Chemical structures of Cu2+ compounds. (B) Synthetic routes of Cu2+ compounds (C1 and C2).
Molecules 26 06070 g001
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Khan, M.H.; Cai, M.; Deng, J.; Yu, P.; Liang, H.; Yang, F. Correction: Khan et al. Anticancer Function and ROS-Mediated Multi-Targeting Anticancer Mechanisms of Copper (II) 2-hydroxy-1-naphthaldehyde Complexes. Molecules 2019, 24, 2544. Molecules 2021, 26, 6070. https://0-doi-org.brum.beds.ac.uk/10.3390/molecules26196070

AMA Style

Khan MH, Cai M, Deng J, Yu P, Liang H, Yang F. Correction: Khan et al. Anticancer Function and ROS-Mediated Multi-Targeting Anticancer Mechanisms of Copper (II) 2-hydroxy-1-naphthaldehyde Complexes. Molecules 2019, 24, 2544. Molecules. 2021; 26(19):6070. https://0-doi-org.brum.beds.ac.uk/10.3390/molecules26196070

Chicago/Turabian Style

Khan, Muhammad Hamid, Meiling Cai, Jungang Deng, Ping Yu, Hong Liang, and Feng Yang. 2021. "Correction: Khan et al. Anticancer Function and ROS-Mediated Multi-Targeting Anticancer Mechanisms of Copper (II) 2-hydroxy-1-naphthaldehyde Complexes. Molecules 2019, 24, 2544" Molecules 26, no. 19: 6070. https://0-doi-org.brum.beds.ac.uk/10.3390/molecules26196070

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