Crystal structure, thermal and magnetic behavior of inorganic-organic hybrid [VIV 4O10 VV 2O4] (C6H14N2) •H2O polymeric framework
The inorganic-organic hybrid [VIV4O10VV2O4] (C6H14N2)•H2O polymeric framework was prepared under mild hydrothermal conditions from a mixture of DABCO and V2O5in deionized water with a 1:1:450 mole ratio, at neutral pH. The reaction was carried out at 180°C for 3 days under autogenous pressure yieldi...
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th-cmuir.6653943832-617392018-09-11T08:58:20Z Crystal structure, thermal and magnetic behavior of inorganic-organic hybrid [VIV 4O10 VV 2O4] (C6H14N2) •H2O polymeric framework Thapanon Settheeworrarit Chaveng Pakawatchai Santi Maensiri Jumras Limtrakul Apinpus Rujiwatra Materials Science The inorganic-organic hybrid [VIV4O10VV2O4] (C6H14N2)•H2O polymeric framework was prepared under mild hydrothermal conditions from a mixture of DABCO and V2O5in deionized water with a 1:1:450 mole ratio, at neutral pH. The reaction was carried out at 180°C for 3 days under autogenous pressure yielding phase pure crystals product. The crystal structure was studied using both powder and single crystal X-ray crystallography, revealing the structure to be of the ({UuDd}:T*)α′ type in the SP+T class and Z-T subclass. The presence of the organic cation was confirmed by FT-IR spectrum and chemical composition analysis. The structure was thermally stable up to over 400°C, and showed ferromagnetic character at room temperature with the maximum molar susceptibility of 8.26 × 10-3emu/mol-1at zero applied field. © 2006 Springer Science+Business Media, LLC. 2018-09-11T08:58:20Z 2018-09-11T08:58:20Z 2006-09-01 Journal 15741451 15741443 2-s2.0-33750982096 10.1007/s10904-006-9051-x https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=33750982096&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/61739 |
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Materials Science Thapanon Settheeworrarit Chaveng Pakawatchai Santi Maensiri Jumras Limtrakul Apinpus Rujiwatra Crystal structure, thermal and magnetic behavior of inorganic-organic hybrid [VIV 4O10 VV 2O4] (C6H14N2) •H2O polymeric framework |
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The inorganic-organic hybrid [VIV4O10VV2O4] (C6H14N2)•H2O polymeric framework was prepared under mild hydrothermal conditions from a mixture of DABCO and V2O5in deionized water with a 1:1:450 mole ratio, at neutral pH. The reaction was carried out at 180°C for 3 days under autogenous pressure yielding phase pure crystals product. The crystal structure was studied using both powder and single crystal X-ray crystallography, revealing the structure to be of the ({UuDd}:T*)α′ type in the SP+T class and Z-T subclass. The presence of the organic cation was confirmed by FT-IR spectrum and chemical composition analysis. The structure was thermally stable up to over 400°C, and showed ferromagnetic character at room temperature with the maximum molar susceptibility of 8.26 × 10-3emu/mol-1at zero applied field. © 2006 Springer Science+Business Media, LLC. |
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Thapanon Settheeworrarit Chaveng Pakawatchai Santi Maensiri Jumras Limtrakul Apinpus Rujiwatra |
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Thapanon Settheeworrarit Chaveng Pakawatchai Santi Maensiri Jumras Limtrakul Apinpus Rujiwatra |
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Thapanon Settheeworrarit |
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Crystal structure, thermal and magnetic behavior of inorganic-organic hybrid [VIV 4O10 VV 2O4] (C6H14N2) •H2O polymeric framework |
title_short |
Crystal structure, thermal and magnetic behavior of inorganic-organic hybrid [VIV 4O10 VV 2O4] (C6H14N2) •H2O polymeric framework |
title_full |
Crystal structure, thermal and magnetic behavior of inorganic-organic hybrid [VIV 4O10 VV 2O4] (C6H14N2) •H2O polymeric framework |
title_fullStr |
Crystal structure, thermal and magnetic behavior of inorganic-organic hybrid [VIV 4O10 VV 2O4] (C6H14N2) •H2O polymeric framework |
title_full_unstemmed |
Crystal structure, thermal and magnetic behavior of inorganic-organic hybrid [VIV 4O10 VV 2O4] (C6H14N2) •H2O polymeric framework |
title_sort |
crystal structure, thermal and magnetic behavior of inorganic-organic hybrid [viv 4o10 vv 2o4] (c6h14n2) •h2o polymeric framework |
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2018 |
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https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=33750982096&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/61739 |
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