ZnWO

PXRD Rietveld refinement electron density distribution photoluminescence red phosphor

Journal

Luminescence : the journal of biological and chemical luminescence
ISSN: 1522-7243
Titre abrégé: Luminescence
Pays: England
ID NLM: 100889025

Informations de publication

Date de publication:
Feb 2021
Historique:
received: 16 05 2020
revised: 14 07 2020
accepted: 21 07 2020
pubmed: 25 7 2020
medline: 29 7 2021
entrez: 25 7 2020
Statut: ppublish

Résumé

A high intensity 464 nm excitable ZnWO

Identifiants

pubmed: 32706421
doi: 10.1002/bio.3920
doi:

Substances chimiques

Europium 444W947O8O

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

99-109

Informations de copyright

© 2020 John Wiley & Sons, Ltd.

Références

M. Z. Jacobson, Energy Environ. Sci. 2009, 2.
A. Gasparotto, D. Barreca, C. MacCato, E. Tondello, Nanoscale 2012, 4, 2813.
M. Mondal, L. Mukhopadhyay, V. K. Rai, Int. J. Technol. Manag. 2016, 12.
Nobel Foundation, Blue LEDs - Filling the world with new light, 2014. http://www.nobelprize.org/nobel_prizes/physics/laureates/2014/popular-physicsprize2014.pdf
K. V. R. M. Murali, V. B. Naik, D. Datta, Resonance. 2015, 20, 605.
S. Pimputkar, J. S. Speck, S. P. Denbaars, S. Nakamura, Nat. Photonics 2009, 3, 180.
X. Yan, W. Li, X. Wang, K. Sun, J. Electrochem.Soc. 2012, 159, 195.
K. Toda, Y. Kawakami, S. I. Kousaka, Y. Ito, A. Komeno, K. Uematsu, M. Sato, IEICE Trans. Electron. 2006, E89-C, 1406.
G. Blasse, B. C. Grabmaier, Luminescent Materials Telos (1994).pdf, Springer-Verlag 1994.
J. Rajagukguk, J. Kaewkhao, M. Djamal, R. Hidayat, Suprijadi, Y. Ruangtaweep, J. MolStruct 2016, 1121, 180.
G. Lakshminarayana, A. Wagh, S. D. Kamath, A. Dahshan, H. H. Hegazy, M. Marzec, I. V. Kityk, D. E. Lee, J. Yoon, T. Park, Opt. Mater. 2020, 99, 109555.
C. Janáky, K. Rajeshwar, N. R. De Tacconi, W. Chanmanee, M. N. Huda, Catal. Today 2013, 199, 53.
I. M. Szilágyi, B. Fórizs, O. Rosseler, Á. Szegedi, P. Németh, P. Király, G. Tárkányi, B. Vajna, K. Varga-Josepovits, K. László, A. L. Tóth, P. Baranyai, M. Leskelä, J. Catal. 2012, 294, 119.
P. Siriwong, T. Thongtem, A. Phuruangrat, S. Thongtem, Cryst.Eng. Comm. 2011, 13, 1564.
G. He, H. Fan, L. Ma, K. Wang, D. Ding, C. Liu, Z. Wang, Mater. Sci. Semicond. Process. 2016, 41, 404.
Y. Zhai, X. Li, J. Liu, M. Jiang, J. Rare, Earths. 2015, 33, 350.
M. Zhao, Y. Liu, S. Ma, D. Liu, K. Wang, J. Lumin. 2018, 202, 57.
H. Y. He, Phys. Status.Solidi B 2009, 246, 177.
S. Sasikumar, R. Saravanan, S. Saravanakumar, M. C. Robert, Appl. Phys. A: Mater. Sci. Process. 2018, 124, 31,1.
D. Sivaganesh, S. Saravanakumar, V. Sivakumar, R. Rajajeyaganthan, M. Arunpandian, J. N. Gopal, T. K. Thirumalaisamy, Mater. Charact. 2020, 159, 110035.
S. Saravanakumar, J. Kamalaveni, M. P. Rani, R. Saravanan, J. Mater. Sci.: Mater. Electron. 2014, 25, 837.
D. Sivaganesh, S. Saravanakumar, V. Sivakumar, K. S. S. Ali, E. Akapo, E. Alemayehu, R. Rajajeyaganthan, R. Saravanan, J. Mater. Sci.: Mater. Electron. 2019, 30, 2966.
A. L. Patterson, Phys. Rev. 1939, 56, 978.
A. Khorsand, W. H. Majid, M. E. Abrishami, R. Yousefi, Solid.State.Sci. 2011, 13, 251.
H. M. Rietveld, Phys. Scr. 2014, 89, 098002.
V. Petrícek, M. Dušek, L. Palatinus, Zeitschrift Fur Krist. 2014, 229, 345.
D. Dobler, S. Oswald, K. Wetzig, Anal. Bioanal. Chem. 2002, 374, 646.
M. I. Osotsi, D. K. Macharia, B. Zhu, Z. Wang, X. Shen, Z. Liu, L. Zhang, Z. Chen, Prog. Nat. Sci. Mater. Int. 2018, 28, 408.
T. Anitha, A. E. Reddy, I. K. Durga, S. S. Rao, H. W. Nam, H. J. Kim, J. Electroanal, Chem 2019, 841, 86.
K. W. Chae, T. R. Park, C. Il Cheon, N. I. Cho, J. S. Kim, J. Lumin. 2011, 131, 2597.
F. S. Wen, X. Zhao, H. Huo, J. S. Chen, E. Shu-Lin, J. H. Zhang, Mater. Lett. 2002, 55, 152.
Y. M. Huang, M. Y. Li, L. Yang, B. G. Zhai, Nanomaterials 2018, 8, 765.
Z. Lou, J. Hao, M. Cocivera, J. Lumin. 2002, 99, 349.
H. Kraus, V. B. Mikhailik, Y. Ramachers, D. Day, K. B. Hutton, J. Telfer, Phys. Lett. Sect. B Nucl. Elem. Part. High-Energy Phys 2005, 610, 37.
B. Yan, F. Lei, J. Alloys, Compd. 2010, 507, 460.
X. Liu, B. Shen, B. Chen, Y. Zhang, J. Hu, Opt. Mater. 2019, 96, 109353.
Y. S. Tver, Glasses 2003, 29, 166.
P. F. S. Pereira, A. F. Gouveia, M. Assis, R. C. De Oliveira, I. M. Pinatti, M. Penha, R. F. Gonca̧lves, L. Gracia, J. Andrés, E. Longo, Phys. Chem. Chem. Phys. 2018, 20, 1923.
T. Smith, J. Guild, Trans. Opt. Soc. 1931, 33(3), 74.
K. Momma, T. Ikeda, A. A. Belik, F. Izumi, Powder Diffr. 2013, 28, 184.
K. Momma, F. Izumi, VESTA 3 for three-dimensional visualization of crystal, volumetric and morphology data, 2011, 1272.

Auteurs

Sivaganesh D (S)

Department of Physics, International Research Centre, Kalasalingam Academy of Research and Education, Krishnan Koil, Virudhunagar, Tamil Nadu, India.

Saravanakumar S (S)

Department of Physics, International Research Centre, Kalasalingam Academy of Research and Education, Krishnan Koil, Virudhunagar, Tamil Nadu, India.

Sivakumar V (S)

Department of Physics, KGISL Institute of Technology, Coimbatore, Tamil Nadu, India.

Sasikumar S (S)

State Key Laboratory of Solidification Processing, School of Materials Science and Engineering, Northwestern Polytechnical University, Xi'an, China.

NandhaGopal J (N)

Department of Physics, Saveetha Engineering College, Chennai, Tamil Nadu, India.

Rajajeyaganthan Ramanathan (R)

Department of Chemistry, Kalasalingam Academy of Research and Education, Krishnan Koil, Virudhunagar, Tamil Nadu, India.

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Classifications MeSH