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Correction: Preferential site substitution of Eu3+ ions in Ca10(PO4)6Cl2 nanoparticles obtained using a microwave stimulated wet chemistry technique

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HAL Id: hal-01312345

https://hal.archives-ouvertes.fr/hal-01312345

Submitted on 5 May 2016

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Correction: Preferential site substitution of Eu3+ ions

in Ca10(PO4)6Cl2 nanoparticles obtained using a

microwave stimulated wet chemistry technique

Robert Pązik, J.-M. Nedelec, Rafal J. Wiglusz

To cite this version:

Robert Pązik, J.-M. Nedelec, Rafal J. Wiglusz. Correction: Preferential site substitution of Eu3+ ions in Ca10(PO4)6Cl2 nanoparticles obtained using a microwave stimulated wet chemistry technique. CrystEngComm, Royal Society of Chemistry, 2016, �10.1039/C6CE90050J�. �hal-01312345�

(2)

CrystEngComm

CORRECTION

Cite this: CrystEngComm, 2016, 18, 2780

DOI: 10.1039/c6ce90050j www.rsc.org/crystengcomm

Correction: Preferential site substitution of Eu

3+

ions in Ca

10

(PO

4

)

6

Cl

2

nanoparticles obtained using

a microwave stimulated wet chemistry technique

Robert Pazik,*aJean-Marie Nedelecbcand Rafal J. Wiglusz*a

Correction for ‘Preferential site substitution of Eu3+ions in Ca

10(PO4)6Cl2nanoparticles obtained using a microwave stimulated wet chemistry technique’ by Robert Pazik et al., CrystEngComm, 2014, 16, 5308–5318.

“In accordance with the rule of 2J + 1 at Cssymmetry a maximum of five sublevels should be present for the 5D0 →7F1 and

eight in the case of the5D

0→7F2transitions whereas at C3symmetry the5D0→7F1splits into two and the5D0→7F2into three

Stark components.” Should have read:

In accordance with the rule of 2J + 1 at Cssymmetry a maximum of three sublevels should be present for the5D0→7F1and

five in the case of the5D

0→7F2transitions whereas at C3symmetry the5D0→7F1splits into two and the5D0→7F2into three

Stark components.

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

2780 | CrystEngComm, 2016, 18, 2780 This journal is © The Royal Society of Chemistry 2016

aInstitute of Low Temperature and Structure Research, PAS, Okólna 2, 50–422 Wrocław, Poland. E-mail: R.Wiglusz@int.pan.wroc.pl; Fax: +48 71 344 10 29; Tel: +48 71 395 41 59

bClermont Université, ENSCCF, ICCF, BP10448, 63000 Clermont-Ferrand, France cCNRS, UMR 6296, ICCF, 63171 Aubière, France

Open Access Article. Published on 04 April 2016. Downloaded on 05/05/2016 18:34:26.

This article is licensed under a

Creative Commons Attribution 3.0 Unported Licence.

View Article Online

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