Colossal Magnetoresistance in Perovskite Mn-Oxides Prepared by a Doctor-Blade Technique
碩士 === 義守大學 === 材料科學與工程研究所 === 85 === The La0.67 (Ca/Ba/Sr)0.33 MnO3-xand La0.60 (Y/Nd)0.07 (Ca/Ba/Sr)0.33 MnO3-x plates were prepared by mixing of raw material powders and organic solvent at a ratio of 3:2, shaping by a doctor blade method and sintering at 1400℃ for 4hr. The density of plates...
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ndltd-TW-085ISU031590012015-10-13T12:15:16Z http://ndltd.ncl.edu.tw/handle/20154584394508034638 Colossal Magnetoresistance in Perovskite Mn-Oxides Prepared by a Doctor-Blade Technique 刮刀成形法鈣鈦礦結構氧化物之超巨磁阻現像研究 Wu, Der-Hong 吳得鴻 碩士 義守大學 材料科學與工程研究所 85 The La0.67 (Ca/Ba/Sr)0.33 MnO3-xand La0.60 (Y/Nd)0.07 (Ca/Ba/Sr)0.33 MnO3-x plates were prepared by mixing of raw material powders and organic solvent at a ratio of 3:2, shaping by a doctor blade method and sintering at 1400℃ for 4hr. The density of plates is raised, as the time of mixing/grounding of calcined powder as well as the sintering temperature increase. At room temperature, the La-Ca-Mn-O is paramagnetic, and exhibits a MR ratio of only -2.9%. The MR ratio is increased as temperature decreases, and reaches a maximum MR ratio of -41.1% at 230K. A Y3+ doping enhances the MR in La-Ca-Mn-O plate; which display a MR ratio as high as -93% at 85K. Both La-Ba-Mn-O and La-Sr-Mn-O plates show the ferromagnetic behavior at room temperature. The MR ratio of La-Ba-Mn-O film drops as temperature decreased. On the other side, the La-Sr-Mn-O shows an increasing tendency of MR ratio, as temperature is lowered. The exact reason of this temperature dependency of MR ratio is not quite understood at this moment. Chen, Li-Han 陳立翰 1997 學位論文 ; thesis 63 zh-TW |
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碩士 === 義守大學 === 材料科學與工程研究所 === 85 ===
The La0.67 (Ca/Ba/Sr)0.33 MnO3-xand La0.60 (Y/Nd)0.07 (Ca/Ba/Sr)0.33 MnO3-x plates were prepared by mixing of raw material powders and organic solvent at a ratio of 3:2, shaping by a doctor blade method and sintering at 1400℃ for 4hr. The density of plates is raised, as the time of mixing/grounding of calcined powder as well as the sintering temperature increase. At room temperature, the La-Ca-Mn-O is paramagnetic, and exhibits a MR ratio of only -2.9%. The MR ratio is increased as temperature decreases, and reaches a maximum MR ratio of -41.1% at 230K. A Y3+ doping enhances the MR in La-Ca-Mn-O plate; which display a MR ratio as high as -93% at 85K. Both La-Ba-Mn-O and La-Sr-Mn-O plates show the ferromagnetic behavior at room temperature. The MR ratio of La-Ba-Mn-O film drops as temperature decreased. On the other side, the La-Sr-Mn-O shows an increasing tendency of MR ratio, as temperature is lowered. The exact reason of this temperature dependency of MR ratio is not quite understood at this moment.
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author2 |
Chen, Li-Han |
author_facet |
Chen, Li-Han Wu, Der-Hong 吳得鴻 |
author |
Wu, Der-Hong 吳得鴻 |
spellingShingle |
Wu, Der-Hong 吳得鴻 Colossal Magnetoresistance in Perovskite Mn-Oxides Prepared by a Doctor-Blade Technique |
author_sort |
Wu, Der-Hong |
title |
Colossal Magnetoresistance in Perovskite Mn-Oxides Prepared by a Doctor-Blade Technique |
title_short |
Colossal Magnetoresistance in Perovskite Mn-Oxides Prepared by a Doctor-Blade Technique |
title_full |
Colossal Magnetoresistance in Perovskite Mn-Oxides Prepared by a Doctor-Blade Technique |
title_fullStr |
Colossal Magnetoresistance in Perovskite Mn-Oxides Prepared by a Doctor-Blade Technique |
title_full_unstemmed |
Colossal Magnetoresistance in Perovskite Mn-Oxides Prepared by a Doctor-Blade Technique |
title_sort |
colossal magnetoresistance in perovskite mn-oxides prepared by a doctor-blade technique |
publishDate |
1997 |
url |
http://ndltd.ncl.edu.tw/handle/20154584394508034638 |
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