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Luminescent Composites Based on Europium(III) and Europium(II) Tungstate, Phosphate, and Titanate
— Luminescent composite materials based on europium(III) and europium(II) phosphates, tungstates, and titanates on a titanium substrate have been fabricated by combining two methods—extraction pyrolytic and plasma electrolytic oxidation. Data on the morphology and composition of a multicomponent com...
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Published in: | Russian journal of inorganic chemistry 2022-02, Vol.67 (2), p.245-251 |
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container_end_page | 251 |
container_issue | 2 |
container_start_page | 245 |
container_title | Russian journal of inorganic chemistry |
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creator | Steblevskaya, N. I. Belobeletskaya, M. V. Yarovaya, T. P. Nedozorov, P. M. |
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Luminescent composite materials based on europium(III) and europium(II) phosphates, tungstates, and titanates on a titanium substrate have been fabricated by combining two methods—extraction pyrolytic and plasma electrolytic oxidation. Data on the morphology and composition of a multicomponent composite are presented. It has been demonstrated that the phase composition and luminescence characteristics of the combined coating depend on the number of cycles of applying the extract and on the annealing temperature. Depending on the precursor pyrolysis temperature, europium(III) or europium(II) compounds form in the coating composition. Luminescent properties of the complex oxide composites have been determined from luminescence excitation and luminescence spectra at 300 K. The resulting composites exhibit luminescence both in the wide region (λ = 450–720 nm) and only in the red region (λ
max
~ 620 nm) of the spectrum. |
doi_str_mv | 10.1134/S0036023622020164 |
format | article |
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Luminescent composite materials based on europium(III) and europium(II) phosphates, tungstates, and titanates on a titanium substrate have been fabricated by combining two methods—extraction pyrolytic and plasma electrolytic oxidation. Data on the morphology and composition of a multicomponent composite are presented. It has been demonstrated that the phase composition and luminescence characteristics of the combined coating depend on the number of cycles of applying the extract and on the annealing temperature. Depending on the precursor pyrolysis temperature, europium(III) or europium(II) compounds form in the coating composition. Luminescent properties of the complex oxide composites have been determined from luminescence excitation and luminescence spectra at 300 K. The resulting composites exhibit luminescence both in the wide region (λ = 450–720 nm) and only in the red region (λ
max
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Luminescent composite materials based on europium(III) and europium(II) phosphates, tungstates, and titanates on a titanium substrate have been fabricated by combining two methods—extraction pyrolytic and plasma electrolytic oxidation. Data on the morphology and composition of a multicomponent composite are presented. It has been demonstrated that the phase composition and luminescence characteristics of the combined coating depend on the number of cycles of applying the extract and on the annealing temperature. Depending on the precursor pyrolysis temperature, europium(III) or europium(II) compounds form in the coating composition. Luminescent properties of the complex oxide composites have been determined from luminescence excitation and luminescence spectra at 300 K. The resulting composites exhibit luminescence both in the wide region (λ = 450–720 nm) and only in the red region (λ
max
~ 620 nm) of the spectrum.</description><subject>Chemistry</subject><subject>Chemistry and Materials Science</subject><subject>Composite materials</subject><subject>Europium</subject><subject>Europium compounds</subject><subject>Excitation spectra</subject><subject>Inorganic Chemistry</subject><subject>Inorganic Materials and Nanomaterials</subject><subject>Luminescence</subject><subject>Optical properties</subject><subject>Oxidation</subject><subject>Phase composition</subject><subject>Phosphates</subject><subject>Pyrolysis</subject><subject>Substrates</subject><subject>Titanates</subject><subject>Tungstates</subject><issn>0036-0236</issn><issn>1531-8613</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2022</creationdate><recordtype>article</recordtype><recordid>eNp1kF9LwzAUxYMoOKcfwLeALw6s5iZp0j7qmFoYKDifS9akW4dNatI--O1NnaAgPt1_53cuHITOgVwDMH7zQggThDJBKaEEBD9AE0gZJJkAdogm4zkZ78foJIQdIZwTmU2QWg5tY02ojO3x3LWdC01vAr5TwWjsLF4M3nXN0F4WRTHDyurfmxleDXYTetWbK_y8daHbfrWjbNX0ysbpFB3V6i2Ys-86Ra_3i9X8MVk-PRTz22VSMRB9kqsaqjrjErShmeakpplkaw4irzOgSilD05xLKTQjsmawJlqntKJ5JHTMYIou9r6dd--DCX25c4O38WVJBZOpzBinUQV7VeVdCN7UZeebVvmPEkg5Jln-STIydM-EqLUb43-c_4c-Ab0Ic0M</recordid><startdate>20220201</startdate><enddate>20220201</enddate><creator>Steblevskaya, N. I.</creator><creator>Belobeletskaya, M. V.</creator><creator>Yarovaya, T. P.</creator><creator>Nedozorov, P. M.</creator><general>Pleiades Publishing</general><general>Springer Nature B.V</general><scope>AAYXX</scope><scope>CITATION</scope></search><sort><creationdate>20220201</creationdate><title>Luminescent Composites Based on Europium(III) and Europium(II) Tungstate, Phosphate, and Titanate</title><author>Steblevskaya, N. I. ; Belobeletskaya, M. V. ; Yarovaya, T. P. ; Nedozorov, P. M.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c316t-9af1cf8471de28d40f2873b4169f812aaae2594776d307f31b0dd52c2971dd113</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2022</creationdate><topic>Chemistry</topic><topic>Chemistry and Materials Science</topic><topic>Composite materials</topic><topic>Europium</topic><topic>Europium compounds</topic><topic>Excitation spectra</topic><topic>Inorganic Chemistry</topic><topic>Inorganic Materials and Nanomaterials</topic><topic>Luminescence</topic><topic>Optical properties</topic><topic>Oxidation</topic><topic>Phase composition</topic><topic>Phosphates</topic><topic>Pyrolysis</topic><topic>Substrates</topic><topic>Titanates</topic><topic>Tungstates</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Steblevskaya, N. I.</creatorcontrib><creatorcontrib>Belobeletskaya, M. V.</creatorcontrib><creatorcontrib>Yarovaya, T. P.</creatorcontrib><creatorcontrib>Nedozorov, P. M.</creatorcontrib><collection>CrossRef</collection><jtitle>Russian journal of inorganic chemistry</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Steblevskaya, N. I.</au><au>Belobeletskaya, M. V.</au><au>Yarovaya, T. P.</au><au>Nedozorov, P. M.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Luminescent Composites Based on Europium(III) and Europium(II) Tungstate, Phosphate, and Titanate</atitle><jtitle>Russian journal of inorganic chemistry</jtitle><stitle>Russ. J. Inorg. Chem</stitle><date>2022-02-01</date><risdate>2022</risdate><volume>67</volume><issue>2</issue><spage>245</spage><epage>251</epage><pages>245-251</pages><issn>0036-0236</issn><eissn>1531-8613</eissn><abstract>—
Luminescent composite materials based on europium(III) and europium(II) phosphates, tungstates, and titanates on a titanium substrate have been fabricated by combining two methods—extraction pyrolytic and plasma electrolytic oxidation. Data on the morphology and composition of a multicomponent composite are presented. It has been demonstrated that the phase composition and luminescence characteristics of the combined coating depend on the number of cycles of applying the extract and on the annealing temperature. Depending on the precursor pyrolysis temperature, europium(III) or europium(II) compounds form in the coating composition. Luminescent properties of the complex oxide composites have been determined from luminescence excitation and luminescence spectra at 300 K. The resulting composites exhibit luminescence both in the wide region (λ = 450–720 nm) and only in the red region (λ
max
~ 620 nm) of the spectrum.</abstract><cop>Moscow</cop><pub>Pleiades Publishing</pub><doi>10.1134/S0036023622020164</doi><tpages>7</tpages></addata></record> |
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subjects | Chemistry Chemistry and Materials Science Composite materials Europium Europium compounds Excitation spectra Inorganic Chemistry Inorganic Materials and Nanomaterials Luminescence Optical properties Oxidation Phase composition Phosphates Pyrolysis Substrates Titanates Tungstates |
title | Luminescent Composites Based on Europium(III) and Europium(II) Tungstate, Phosphate, and Titanate |
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