Skip to main content
Materials logoLink to Materials
. 2020 Nov 23;13(22):5299. doi: 10.3390/ma13225299

Correction: Saeed, S., et al. Enhancement of Photorefraction in Vanadium-Doped Lithium Niobate through Iron and Zirconium Co-Doping. Materials 2019, Vol. 12, 3143

Shahzad Saeed 1, Hongde Liu 1,*, Liyun Xue 1, Dahuai Zheng 1, Shiguo Liu 1, Shaolin Chen 1, Yongfa Kong 1,*, Romano Rupp 2,3, Jingjun Xu 1
PMCID: PMC7700261  PMID: 33238659

The authors wish to make the following corrections to this paper [1]. Due to mislabeling, replace:

Table 1.

Composition ratio of various iron, zirconium, and vanadium co-doped LN crystals.

Sample Symbol Fe (wt.%) Zr (mol%) V (mol%)
LN:V, Zr2.0 (LN1) 2.0 0.1
LN:V, Zr3.0 (LN2) 3.0 0.1
LN:V, Zr4.0 (LN3) 4.0 0.1
LN:V, Zr2.0, Fe (LN4) 0.03 2.0 0.1
LN:V, Zr3.0, Fe (LN5) 0.03 3.0 0.1
LN:V, Zr4.0, Fe (LN6) 0.03 4.0 0.1
LN:V, Fe (LN7) 0.03 0.1

with:

Table 1.

Composition ratio of various iron, zirconium, and vanadium co-doped LN crystals.

Sample Symbol Fe (wt.%) Zr (mol%) V (mol%)
LN:V,Zr2.0,Fe (LN1) 0.03 2.0 0.1
LN:V,Zr3.0,Fe (LN2) 0.03 3.0 0.1
LN:V,Zr4.0,Fe (LN3) 0.03 4.0 0.1
LN:V,Zr2.0 (LN4) 2.0 0.1
LN:V,Zr3.0 (LN5) 3.0 0.1
LN:V,Zr4.0 (LN6) 4.0 0.1
LN:V,Fe (LN7) 0.03 0.1
LN:V (LN8) 0.1

The authors would like to apologize for any inconvenience caused to the readers by these changes.

Footnotes

Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations.

Reference

  • 1.Saeed S., Liu H., Xue L., Zheng D., Liu S., Chen S., Kong Y., Rupp R., Xu J. Enhancement of Photorefraction in Vanadium-Doped Lithium Niobate through Iron and Zirconium Co-Doping. Materials. 2019;12:3143. doi: 10.3390/ma12193143. [DOI] [PMC free article] [PubMed] [Google Scholar]

Articles from Materials are provided here courtesy of Multidisciplinary Digital Publishing Institute (MDPI)

RESOURCES