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首页> 外文期刊>Corrosion science >Passivation oxide film on Nd-Fe-B permanent magnets in borate buffer solution by ellipsometry
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Passivation oxide film on Nd-Fe-B permanent magnets in borate buffer solution by ellipsometry

机译:椭偏法在硼酸盐缓冲溶液中Nd-Fe-B永磁体上的钝化氧化膜

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摘要

The passivation of Nd-Fe-B permanent magnet was investigated in neutral borate solution at pH 8.4. The thickness of the passive oxide film on the magnets was measured by ellipsometry and the composition was estimated by glow discharge optical emission spectroscopy (GD-OES).rnThe passivation of the magnets takes place in the potential range between -0.2 and 1.0 V vs. Ag/AgCl/Sat. KCl. In the potential range, current density decays to the lower than 10~(-6) A cm~(-2) after potentiostatic oxidation for 1800 s. The passive oxide film growth is assumed to be optically simulated from a model with a homogeneous film with complex refractive index, N =2.1 - j0.086. The thickness estimated from the refractive index linearly increases with potential from 3.6 nm at -0.2 V to 7.8 nm at 1.0 V. The passive film growth follows the ionic migration model under high electric field, i.e., the Cabrera-Mott growth model. The ionic conductivity estimated from the model is about κ = 1.7 × 10~(-16) Ω~(-1) cm~(-1). The passive oxide film is preferentially composed of iron oxide/hydroxide. Boron and neodymium are, respectively, concentrated at the surface of the oxide film and at the inner layer in the oxide film.
机译:在pH值为8.4的中性硼酸盐溶液中研究了Nd-Fe-B永磁体的钝化。磁体上的钝化氧化物膜的厚度通过椭圆偏振光度法测量,并且成分通过辉光放电光发射光谱法(GD-OES)估算。rn磁体的钝化发生在-0.2 V与1.0 V vs. 0 V之间的电势范围内。 Ag / AgCl /饱和氯化钾在电位范围内,恒电位氧化1800 s后电流密度衰减至低于10〜(-6)A cm〜(-2)。假设被动氧化物膜的生长是从具有均匀折射率N = 2.1-j0.086的均质膜的模型进行光学模拟的。根据折射率估算的厚度随着电位的增加而从-0.2 V的3.6 nm线性增加到1.0 V的7.8 nm线性增加。无源膜生长遵循高电场下的离子迁移模型,即Cabrera-Mott生长模型。由模型估算的离子电导率约为κ= 1.7×10〜(-16)Ω〜(-1)cm〜(-1)。钝化氧化物膜优选由氧化铁/氢氧化物构成。硼和钕分别集中在氧化膜的表面和氧化膜的内层。

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