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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Main Authors: Wu, Der-Hong, 吳得鴻
Other Authors: Chen, Li-Han
Format: Others
Language:zh-TW
Published: 1997
Online Access:http://ndltd.ncl.edu.tw/handle/20154584394508034638
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spelling 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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language zh-TW
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sources NDLTD
description 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.
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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