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电解质溶液的高频导电现象及理论修正
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作者 张恺 +2 位作者 张昊 江洪建 王思慧 《物理实验》 北大核心 2009年第11期38-42,共5页
现有的溶液导电理论认为溶液总阻抗为容性.通过实验发现,高频时溶液阻抗会随频率增大而增大,而且溶液的电流滞后于电压.这些都与现有理论不符.本文修正了溶液导电模型,使之在低频端与原有理论一致,在高频范围与实验现象吻合.
关键词 电解质溶液 阻抗 导纳 电化学阻抗谱 高频
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Transformation behaviors,structural and magnetic characteristics of Ni-Mn-Ga films on MgO(001) 被引量:1
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作者 谢忍 唐少龙 +3 位作者 唐妍梅 唐涛 都有为 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第10期522-528,共7页
Ferromagnetic Ni-Mn-Ga films were fabricated by depositing on MgO (001) substrates at temperatures from 673 K to 923 K. Microstructure, crystal structure, martensitic transformation behavior, and magnetic properties... Ferromagnetic Ni-Mn-Ga films were fabricated by depositing on MgO (001) substrates at temperatures from 673 K to 923 K. Microstructure, crystal structure, martensitic transformation behavior, and magnetic properties of the films were studied. With increasing deposition temperature, the surface morphology of the films transforms from granular to continu- ous. The martensitic transformation temperature is not dependent on deposition temperature; while transformation behavior is affected substantially by deposition temperature. X-ray analysis reveals that the film deposited at 873 K has a 7M marten- site phase, and its magnetization curve provides a typical step-increase, indicating the occurrence of magnetically induced reorientation (MIR). In situ magnetic domain structure observation on the film deposited at 873 K reflects that the marten- sitic transformation could be divided into two periods: nucleation and growth, in the form of stripe domains. The MIR occurs at the temperature at which martensitic transformation starts, and the switching field increases with the decrease of temperature due to damped thermal activation. The magnetically induced martensitic transformation is related to the difference of magnetization between martensite and austenite. A shift of martensite temperature of dT/dH = 0.43 K/T is observed, consistent with the theoretical value, 0.41 K/T. 展开更多
关键词 Ni-Mn-Ga film ferromagnetic-shape memory alloy transformation behavior magnetically in-duced reorientation magnetically induced martensitic transformation
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