Pulsed EPR spectroscopy of Gd3+ centers in Ca1−xRxF2+x (R=La, Y) mixed crystals
A study of Gd3+ centers in Ca1−xRxF2+x (R=La, Y) crystals using pulsed EPR spectroscopy is presented. The echo-induced EPR (ESE-EPR) spectrum shows, besides the signal of slightly perturbed cubic Gd3+ centers, a broad signal at g≈2 due to Gd3+ centers at low symmetry sites. To describe the effects o...
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Veröffentlicht in: | Applied magnetic resonance 1997-03, Vol.12 (2-3), p.375-387 |
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description | A study of Gd3+ centers in Ca1−xRxF2+x (R=La, Y) crystals using pulsed EPR spectroscopy is presented. The echo-induced EPR (ESE-EPR) spectrum shows, besides the signal of slightly perturbed cubic Gd3+ centers, a broad signal at g≈2 due to Gd3+ centers at low symmetry sites. To describe the effects of R3+ ions on the EPR Gd3+, a model, including cubic and linear R3+−2Fi− centers, is developed. Its predictions are compared with the experimental results. The composition dependence of the EPR signal due to slightly perturbed cubic Gd3+ centers in mixed Ca1−xRxF2+x crystals is explained taking into account the different clustering tendency in La and Y crystals. Moreover, the formation of mixed clusters involving R3+ and Gd3+ ions is proposed for both series of samples. A greater clustering trend is found in the Y crystals than in the La ones. Gd3+ ions are found to be a “non innocent” paramagnetic probe for structural studies in these mixed crystals. |
doi_str_mv | 10.1007/BF03162203 |
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B ; Alcalá, R ; Alonso, P. J</creator><creatorcontrib>Arauzo, A. B ; Alcalá, R ; Alonso, P. J</creatorcontrib><description>A study of Gd3+ centers in Ca1−xRxF2+x (R=La, Y) crystals using pulsed EPR spectroscopy is presented. The echo-induced EPR (ESE-EPR) spectrum shows, besides the signal of slightly perturbed cubic Gd3+ centers, a broad signal at g≈2 due to Gd3+ centers at low symmetry sites. To describe the effects of R3+ ions on the EPR Gd3+, a model, including cubic and linear R3+−2Fi− centers, is developed. Its predictions are compared with the experimental results. The composition dependence of the EPR signal due to slightly perturbed cubic Gd3+ centers in mixed Ca1−xRxF2+x crystals is explained taking into account the different clustering tendency in La and Y crystals. Moreover, the formation of mixed clusters involving R3+ and Gd3+ ions is proposed for both series of samples. A greater clustering trend is found in the Y crystals than in the La ones. 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B</creatorcontrib><creatorcontrib>Alcalá, R</creatorcontrib><creatorcontrib>Alonso, P. J</creatorcontrib><title>Pulsed EPR spectroscopy of Gd3+ centers in Ca1−xRxF2+x (R=La, Y) mixed crystals</title><title>Applied magnetic resonance</title><description>A study of Gd3+ centers in Ca1−xRxF2+x (R=La, Y) crystals using pulsed EPR spectroscopy is presented. The echo-induced EPR (ESE-EPR) spectrum shows, besides the signal of slightly perturbed cubic Gd3+ centers, a broad signal at g≈2 due to Gd3+ centers at low symmetry sites. To describe the effects of R3+ ions on the EPR Gd3+, a model, including cubic and linear R3+−2Fi− centers, is developed. Its predictions are compared with the experimental results. The composition dependence of the EPR signal due to slightly perturbed cubic Gd3+ centers in mixed Ca1−xRxF2+x crystals is explained taking into account the different clustering tendency in La and Y crystals. Moreover, the formation of mixed clusters involving R3+ and Gd3+ ions is proposed for both series of samples. A greater clustering trend is found in the Y crystals than in the La ones. Gd3+ ions are found to be a “non innocent” paramagnetic probe for structural studies in these mixed crystals.</description><subject>Clustering</subject><subject>Gadolinium</subject><subject>Lanthanum</subject><subject>Mixed crystals</subject><subject>Spectroscopy</subject><subject>Spectrum analysis</subject><issn>0937-9347</issn><issn>1613-7507</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>1997</creationdate><recordtype>article</recordtype><sourceid>ABUWG</sourceid><sourceid>AFKRA</sourceid><sourceid>AZQEC</sourceid><sourceid>BENPR</sourceid><sourceid>CCPQU</sourceid><sourceid>DWQXO</sourceid><sourceid>GNUQQ</sourceid><recordid>eNotjUFKw0AUQAdRMFY3nmDAjVKj8-cnmfyFCw1NFQLWoAtXZTKZQEtNYiaB9AauPaInMaCrx9u8x9g5iBsQQt0-pAIhklLgAfMgAvRVKNQh8wSh8gkDdcxOnNsKAWEMymMvq2HnbMkXq5y71pq-a5xp2j1vKr4scc6NrXvbOb6peaLh5-t7zMdUzkd-md9l-pq_X_GPzTgVTLd3vd65U3ZUTbBn_5yxt3Txmjz62fPyKbnP_BYAe9_GRkW2LA0RFBVWFGAZBwasRGWoKgpdRiqWKIpQBzrUEgoILalC0mRocMYu_rpt13wO1vXrbTN09bRcSwJFkgQR_gKOKk8e</recordid><startdate>19970301</startdate><enddate>19970301</enddate><creator>Arauzo, A. 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B</au><au>Alcalá, R</au><au>Alonso, P. J</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Pulsed EPR spectroscopy of Gd3+ centers in Ca1−xRxF2+x (R=La, Y) mixed crystals</atitle><jtitle>Applied magnetic resonance</jtitle><date>1997-03-01</date><risdate>1997</risdate><volume>12</volume><issue>2-3</issue><spage>375</spage><epage>387</epage><pages>375-387</pages><issn>0937-9347</issn><eissn>1613-7507</eissn><abstract>A study of Gd3+ centers in Ca1−xRxF2+x (R=La, Y) crystals using pulsed EPR spectroscopy is presented. The echo-induced EPR (ESE-EPR) spectrum shows, besides the signal of slightly perturbed cubic Gd3+ centers, a broad signal at g≈2 due to Gd3+ centers at low symmetry sites. To describe the effects of R3+ ions on the EPR Gd3+, a model, including cubic and linear R3+−2Fi− centers, is developed. Its predictions are compared with the experimental results. The composition dependence of the EPR signal due to slightly perturbed cubic Gd3+ centers in mixed Ca1−xRxF2+x crystals is explained taking into account the different clustering tendency in La and Y crystals. Moreover, the formation of mixed clusters involving R3+ and Gd3+ ions is proposed for both series of samples. A greater clustering trend is found in the Y crystals than in the La ones. Gd3+ ions are found to be a “non innocent” paramagnetic probe for structural studies in these mixed crystals.</abstract><cop>Heidelberg</cop><pub>Springer Nature B.V</pub><doi>10.1007/BF03162203</doi><tpages>13</tpages></addata></record> |
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subjects | Clustering Gadolinium Lanthanum Mixed crystals Spectroscopy Spectrum analysis |
title | Pulsed EPR spectroscopy of Gd3+ centers in Ca1−xRxF2+x (R=La, Y) mixed crystals |
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