Why do antiferroelectrics show higher fatigue resistance than ferroelectrics under bipolar electrical cycling?
10.1063/1.3082375
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sg-nus-scholar.10635-650612023-10-30T20:58:24Z Why do antiferroelectrics show higher fatigue resistance than ferroelectrics under bipolar electrical cycling? Lou, X.J. MATERIALS SCIENCE AND ENGINEERING 10.1063/1.3082375 Applied Physics Letters 94 7 - APPLA 2014-06-17T08:00:42Z 2014-06-17T08:00:42Z 2009 Article Lou, X.J. (2009). Why do antiferroelectrics show higher fatigue resistance than ferroelectrics under bipolar electrical cycling?. Applied Physics Letters 94 (7) : -. ScholarBank@NUS Repository. https://doi.org/10.1063/1.3082375 00036951 http://scholarbank.nus.edu.sg/handle/10635/65061 000263599200053 Scopus |
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10.1063/1.3082375 |
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MATERIALS SCIENCE AND ENGINEERING |
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MATERIALS SCIENCE AND ENGINEERING Lou, X.J. |
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Lou, X.J. |
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Lou, X.J. Why do antiferroelectrics show higher fatigue resistance than ferroelectrics under bipolar electrical cycling? |
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Lou, X.J. |
title |
Why do antiferroelectrics show higher fatigue resistance than ferroelectrics under bipolar electrical cycling? |
title_short |
Why do antiferroelectrics show higher fatigue resistance than ferroelectrics under bipolar electrical cycling? |
title_full |
Why do antiferroelectrics show higher fatigue resistance than ferroelectrics under bipolar electrical cycling? |
title_fullStr |
Why do antiferroelectrics show higher fatigue resistance than ferroelectrics under bipolar electrical cycling? |
title_full_unstemmed |
Why do antiferroelectrics show higher fatigue resistance than ferroelectrics under bipolar electrical cycling? |
title_sort |
why do antiferroelectrics show higher fatigue resistance than ferroelectrics under bipolar electrical cycling? |
publishDate |
2014 |
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http://scholarbank.nus.edu.sg/handle/10635/65061 |
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