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1)  Mott-Schottky analysis
Mott-Schottky分析
1.
By employing Mott-Schottky analysis in conjunction with the point defect model(PDM),we compared donor density and donor diffusion coefficients in the passive films formed on the surface of nanocrystallized bulk 304 stainless steel(NB304SS) and cast 304 stainless steel(304SS) in 0.
采用动电位极化曲线和Mott-Schottky分析等电化学测试手段,探讨了轧制纳米块体304不锈钢与普通304不锈钢在0。
2.
Potential (U)-capacitance (C) measurement and Mott-Schottky analysis technology were utilized to understand the coat′s conduction mechanism during its degradation in the electrolyte.
采用电位-电容测试和Mott-Schottky分析技术研究了环氧树脂/碳钢电极在0。
2)  Mott-Schottky plot
Mott-Schottky图
1.
The corrosion inhibition performance of six inhibitors on 316L stainless steel in simulated cooling water is studied by polarization curves,AC impedance,and Mott-Schottky plots.
采用极化曲线、Mott-Schottky图和交流阻抗谱研究了不同缓蚀剂对316L不锈钢的缓蚀效果。
3)  Mott-Schottky plot
Mott-Schottky曲线
4)  Mott-schottky behavior
Mott-Schottky行为
5)  Mott-Schottky curve
Mott-Schottky曲线
1.
The Mott-Schottky curve and electrochemical impedance of 304 stainless steel are measured after immersed in the Na2SO4 and ZnSO4 solutions under the temperature of 50℃、99℃and 280℃.
分别对在50℃、99℃和280℃的Na2SO4及ZnSO4溶液中浸泡24小时的304不锈钢试样测定了其Mott-Schottky曲线和电化学交流阻抗,研究了一系列温度及浓度下ZnSO4溶液中304不锈钢所形成的钝化膜的半导体性能,同时对影响钝化膜半导体性能的因素进行了讨论。
6)  Mott Schottky relationship
Mott-Schottky关系
补充资料:Mott-Schottky equation
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性质:该方程描述半导体的空间电荷层微分电容Csc与半导体表面对于本体的电势△φ的关系:式中ε为相对介电常数,εn为真空介电常数,N是施主(对n型半导体)或受主(对p型半导体)密度;E及Efb分别为电极电势及平带电势,均相对于特定的参比电极。此式在时成立。根据上述方程,对E作图应为一直线,即莫特-肖特基图。直线的延长线在纵轴上的截距可以给出Efb;从直线的斜率可求得N。但表面态的干扰会造成偏离莫特-肖特基理论关系式。所以应核实由此图得到的“Efb”与电容测量中所用的频率无关。

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