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Influence of surface plasmon resonance of Ag nanoparticles on photoluminescence of Ho3+ ions in magnesium-zinc-sulfophosphate glass system
•Two series of Ho3+ doped and Ag NPs embedded phosphate glasses were prepared.•Judd-Ofelt theory was used to evaluate the intensity and radiative parameters.•Emission spectra of glasses revealed prominent green and red bands.•LSPR by Ag NPs was more prominent in low Ho3+ ions content.•MZSPH0.5 + Ag0...
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Published in: | Optics and laser technology 2020-06, Vol.126, p.106134, Article 106134 |
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description | •Two series of Ho3+ doped and Ag NPs embedded phosphate glasses were prepared.•Judd-Ofelt theory was used to evaluate the intensity and radiative parameters.•Emission spectra of glasses revealed prominent green and red bands.•LSPR by Ag NPs was more prominent in low Ho3+ ions content.•MZSPH0.5 + Ag0.3 has the highest stimulated emission cross-section.
Two series of magnesium-zinc-sulfophosphate glasses with the high (Series 1) and low (Series 2) doping levels of Ho3+ under varying Ag nanoparticles (Ag NPs) contents were prepared using the melt-quenching method and characterized. The XRD pattern of the as-quenched samples verified their glassy nature. The TEM image revealed the existence of Ag nanocrystallites of diameter ≈4.93 nm with (422) lattice plane orientation inside the glass matrix. The LSPR absorption band of Ag NPs was probed at 408 nm. Absorption spectra of glasses consisted of twelve significant bands wherein 5I8 → 5G6 transition in Ho3+ disclosed the highest intensity. The optical band gap energies of glasses were increased with the rise in Ag NPs contents. The nephelauxetic ratio of both glass series displayed the ionic character of Ho3+ bond with surrounding ligands. The oscillator strength and intensity parameters (Ω2, Ω4, Ω6) were determined using Judd-Ofelt theory. The photoluminescence emission intensity was appreciably influenced by the Ag NPs concentration changes. Series 2 glass showed the highest emission enhancement factor of 2.04 and 2.15 for the 5F4→ 5I8 (green) and 5F5→ 5I8 (red) transition, respectively. The branching ratio and stimulated emission cross-section of the glasses were estimated from the emission spectra. Intense green and red emission obtained from the proposed glasses may be useful for the development of the efficient solid state laser medium. |
doi_str_mv | 10.1016/j.optlastec.2020.106134 |
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Two series of magnesium-zinc-sulfophosphate glasses with the high (Series 1) and low (Series 2) doping levels of Ho3+ under varying Ag nanoparticles (Ag NPs) contents were prepared using the melt-quenching method and characterized. The XRD pattern of the as-quenched samples verified their glassy nature. The TEM image revealed the existence of Ag nanocrystallites of diameter ≈4.93 nm with (422) lattice plane orientation inside the glass matrix. The LSPR absorption band of Ag NPs was probed at 408 nm. Absorption spectra of glasses consisted of twelve significant bands wherein 5I8 → 5G6 transition in Ho3+ disclosed the highest intensity. The optical band gap energies of glasses were increased with the rise in Ag NPs contents. The nephelauxetic ratio of both glass series displayed the ionic character of Ho3+ bond with surrounding ligands. The oscillator strength and intensity parameters (Ω2, Ω4, Ω6) were determined using Judd-Ofelt theory. The photoluminescence emission intensity was appreciably influenced by the Ag NPs concentration changes. Series 2 glass showed the highest emission enhancement factor of 2.04 and 2.15 for the 5F4→ 5I8 (green) and 5F5→ 5I8 (red) transition, respectively. The branching ratio and stimulated emission cross-section of the glasses were estimated from the emission spectra. Intense green and red emission obtained from the proposed glasses may be useful for the development of the efficient solid state laser medium.</description><identifier>ISSN: 0030-3992</identifier><identifier>EISSN: 1879-2545</identifier><identifier>DOI: 10.1016/j.optlastec.2020.106134</identifier><language>eng</language><publisher>Kidlington: Elsevier Ltd</publisher><subject>Absorption spectra ; Ag NPs ; Emission spectra ; Glass ; Holmium ; Holmium ions ; Judd-Ofelt parameters ; Localized surface plasmon resonance ; Magnesium ; Nanoparticles ; Photoluminescence ; Silver ; Solid state lasers ; Stimulated emission ; Surface plasmon resonance ; Zinc</subject><ispartof>Optics and laser technology, 2020-06, Vol.126, p.106134, Article 106134</ispartof><rights>2020 Elsevier Ltd</rights><rights>Copyright Elsevier BV Jun 2020</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c273t-7b30eea0c60b079bb9db46556d06aeb525c5d120b7b084f911ce5c382e8c06c23</citedby><cites>FETCH-LOGICAL-c273t-7b30eea0c60b079bb9db46556d06aeb525c5d120b7b084f911ce5c382e8c06c23</cites></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,780,784,27924,27925</link.rule.ids></links><search><creatorcontrib>Jupri, S.A.</creatorcontrib><creatorcontrib>Ghoshal, S.K.</creatorcontrib><creatorcontrib>Yusof, N.N.</creatorcontrib><creatorcontrib>Omar, M.F.</creatorcontrib><creatorcontrib>Hamzah, K.</creatorcontrib><creatorcontrib>Krishnan, G.</creatorcontrib><title>Influence of surface plasmon resonance of Ag nanoparticles on photoluminescence of Ho3+ ions in magnesium-zinc-sulfophosphate glass system</title><title>Optics and laser technology</title><description>•Two series of Ho3+ doped and Ag NPs embedded phosphate glasses were prepared.•Judd-Ofelt theory was used to evaluate the intensity and radiative parameters.•Emission spectra of glasses revealed prominent green and red bands.•LSPR by Ag NPs was more prominent in low Ho3+ ions content.•MZSPH0.5 + Ag0.3 has the highest stimulated emission cross-section.
Two series of magnesium-zinc-sulfophosphate glasses with the high (Series 1) and low (Series 2) doping levels of Ho3+ under varying Ag nanoparticles (Ag NPs) contents were prepared using the melt-quenching method and characterized. The XRD pattern of the as-quenched samples verified their glassy nature. The TEM image revealed the existence of Ag nanocrystallites of diameter ≈4.93 nm with (422) lattice plane orientation inside the glass matrix. The LSPR absorption band of Ag NPs was probed at 408 nm. Absorption spectra of glasses consisted of twelve significant bands wherein 5I8 → 5G6 transition in Ho3+ disclosed the highest intensity. The optical band gap energies of glasses were increased with the rise in Ag NPs contents. The nephelauxetic ratio of both glass series displayed the ionic character of Ho3+ bond with surrounding ligands. The oscillator strength and intensity parameters (Ω2, Ω4, Ω6) were determined using Judd-Ofelt theory. The photoluminescence emission intensity was appreciably influenced by the Ag NPs concentration changes. Series 2 glass showed the highest emission enhancement factor of 2.04 and 2.15 for the 5F4→ 5I8 (green) and 5F5→ 5I8 (red) transition, respectively. The branching ratio and stimulated emission cross-section of the glasses were estimated from the emission spectra. Intense green and red emission obtained from the proposed glasses may be useful for the development of the efficient solid state laser medium.</description><subject>Absorption spectra</subject><subject>Ag NPs</subject><subject>Emission spectra</subject><subject>Glass</subject><subject>Holmium</subject><subject>Holmium ions</subject><subject>Judd-Ofelt parameters</subject><subject>Localized surface plasmon resonance</subject><subject>Magnesium</subject><subject>Nanoparticles</subject><subject>Photoluminescence</subject><subject>Silver</subject><subject>Solid state lasers</subject><subject>Stimulated emission</subject><subject>Surface plasmon resonance</subject><subject>Zinc</subject><issn>0030-3992</issn><issn>1879-2545</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2020</creationdate><recordtype>article</recordtype><recordid>eNqFkM9O4zAQxq3VIm0X9hnWEkeUMrbzpzlWCLZISFzgbDnOpHWV2MGTIMEj8NS4apcrJ4883_fNzI-xvwKWAkR5vV-GceoNTWiXEuThtxQq_8EWYlXVmSzy4idbACjIVF3LX-w30R4A8rJQC_Zx77t-Rm-Rh47THDuTyjHlDcHziBS8OTXXW57qMJo4Odsj8SQYd2EK_Tw4j2T_p2yCuuIueOLO88FsU8_NQ_buvM1o7ruQXDTuzIR8mwYRp7e0_XDBzjrTE_45vefs-e726WaTPTz-u79ZP2RWVmrKqkYBogFbQgNV3TR126RbirKF0mBTyMIWrZDQVA2s8q4WwmJh1UriykJppTpnl8fcMYaXGWnS-zBHn0ZqmecgAKSok6o6qmwMRBE7PUY3mPimBegDeL3XX-D1Abw-gk_O9dGJ6YhXh1GTdQc2rYtoJ90G923GJ3Aqk4g</recordid><startdate>202006</startdate><enddate>202006</enddate><creator>Jupri, S.A.</creator><creator>Ghoshal, S.K.</creator><creator>Yusof, N.N.</creator><creator>Omar, M.F.</creator><creator>Hamzah, K.</creator><creator>Krishnan, G.</creator><general>Elsevier Ltd</general><general>Elsevier BV</general><scope>AAYXX</scope><scope>CITATION</scope><scope>7SP</scope><scope>7U5</scope><scope>8FD</scope><scope>F28</scope><scope>FR3</scope><scope>H8D</scope><scope>L7M</scope></search><sort><creationdate>202006</creationdate><title>Influence of surface plasmon resonance of Ag nanoparticles on photoluminescence of Ho3+ ions in magnesium-zinc-sulfophosphate glass system</title><author>Jupri, S.A. ; Ghoshal, S.K. ; Yusof, N.N. ; Omar, M.F. ; Hamzah, K. ; Krishnan, G.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c273t-7b30eea0c60b079bb9db46556d06aeb525c5d120b7b084f911ce5c382e8c06c23</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2020</creationdate><topic>Absorption spectra</topic><topic>Ag NPs</topic><topic>Emission spectra</topic><topic>Glass</topic><topic>Holmium</topic><topic>Holmium ions</topic><topic>Judd-Ofelt parameters</topic><topic>Localized surface plasmon resonance</topic><topic>Magnesium</topic><topic>Nanoparticles</topic><topic>Photoluminescence</topic><topic>Silver</topic><topic>Solid state lasers</topic><topic>Stimulated emission</topic><topic>Surface plasmon resonance</topic><topic>Zinc</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Jupri, S.A.</creatorcontrib><creatorcontrib>Ghoshal, S.K.</creatorcontrib><creatorcontrib>Yusof, N.N.</creatorcontrib><creatorcontrib>Omar, M.F.</creatorcontrib><creatorcontrib>Hamzah, K.</creatorcontrib><creatorcontrib>Krishnan, G.</creatorcontrib><collection>CrossRef</collection><collection>Electronics & Communications Abstracts</collection><collection>Solid State and Superconductivity Abstracts</collection><collection>Technology Research Database</collection><collection>ANTE: Abstracts in New Technology & Engineering</collection><collection>Engineering Research Database</collection><collection>Aerospace Database</collection><collection>Advanced Technologies Database with Aerospace</collection><jtitle>Optics and laser technology</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Jupri, S.A.</au><au>Ghoshal, S.K.</au><au>Yusof, N.N.</au><au>Omar, M.F.</au><au>Hamzah, K.</au><au>Krishnan, G.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Influence of surface plasmon resonance of Ag nanoparticles on photoluminescence of Ho3+ ions in magnesium-zinc-sulfophosphate glass system</atitle><jtitle>Optics and laser technology</jtitle><date>2020-06</date><risdate>2020</risdate><volume>126</volume><spage>106134</spage><pages>106134-</pages><artnum>106134</artnum><issn>0030-3992</issn><eissn>1879-2545</eissn><abstract>•Two series of Ho3+ doped and Ag NPs embedded phosphate glasses were prepared.•Judd-Ofelt theory was used to evaluate the intensity and radiative parameters.•Emission spectra of glasses revealed prominent green and red bands.•LSPR by Ag NPs was more prominent in low Ho3+ ions content.•MZSPH0.5 + Ag0.3 has the highest stimulated emission cross-section.
Two series of magnesium-zinc-sulfophosphate glasses with the high (Series 1) and low (Series 2) doping levels of Ho3+ under varying Ag nanoparticles (Ag NPs) contents were prepared using the melt-quenching method and characterized. The XRD pattern of the as-quenched samples verified their glassy nature. The TEM image revealed the existence of Ag nanocrystallites of diameter ≈4.93 nm with (422) lattice plane orientation inside the glass matrix. The LSPR absorption band of Ag NPs was probed at 408 nm. Absorption spectra of glasses consisted of twelve significant bands wherein 5I8 → 5G6 transition in Ho3+ disclosed the highest intensity. The optical band gap energies of glasses were increased with the rise in Ag NPs contents. The nephelauxetic ratio of both glass series displayed the ionic character of Ho3+ bond with surrounding ligands. The oscillator strength and intensity parameters (Ω2, Ω4, Ω6) were determined using Judd-Ofelt theory. The photoluminescence emission intensity was appreciably influenced by the Ag NPs concentration changes. Series 2 glass showed the highest emission enhancement factor of 2.04 and 2.15 for the 5F4→ 5I8 (green) and 5F5→ 5I8 (red) transition, respectively. The branching ratio and stimulated emission cross-section of the glasses were estimated from the emission spectra. Intense green and red emission obtained from the proposed glasses may be useful for the development of the efficient solid state laser medium.</abstract><cop>Kidlington</cop><pub>Elsevier Ltd</pub><doi>10.1016/j.optlastec.2020.106134</doi></addata></record> |
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subjects | Absorption spectra Ag NPs Emission spectra Glass Holmium Holmium ions Judd-Ofelt parameters Localized surface plasmon resonance Magnesium Nanoparticles Photoluminescence Silver Solid state lasers Stimulated emission Surface plasmon resonance Zinc |
title | Influence of surface plasmon resonance of Ag nanoparticles on photoluminescence of Ho3+ ions in magnesium-zinc-sulfophosphate glass system |
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