首页> 外文OA文献 >\u3ci\u3eIn situ\u3c/i\u3e and \u3ci\u3eex situ\u3c/i\u3e optical characterization of electro deposited magneto-optic materials
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\u3ci\u3eIn situ\u3c/i\u3e and \u3ci\u3eex situ\u3c/i\u3e optical characterization of electro deposited magneto-optic materials

机译:\ u3ci \ u3e原位\ u3c / i \ u3e和\ u3ci \ u3eex situ \ u3c / i \ e3e电沉积磁光材料的光学特性

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摘要

Electrodeposition is being investigated as a novel and low-cost method to prepare magneto-optic thin film and nanostructured materials. This deposition method allows precise control over thin-film properties and permits deposition of novel magnetic geometries. Multilayers and alloys can be deposited and controlled by adjusting deposition potentials and ion concentrations in the bath. Nickel/cobalt alloys have been electrodeposited from sulfamate, sulfate, and chloride solutions onto Au substrates. The optical properties were monitored in situ with a real-time spectroscopic ellipsometer measuring simultaneously at 44 wavelengths in the 410–750 nm spectral range. In situ measurements have the advantage of determining the material microstructural properties (thickness, density, and roughness) before the films are oxidized in the air ambient. Ex situ variable angle spectroscopic ellipsometry measurements were taken over the spectral range from 205 to 1000 nm.
机译:正在研究电沉积作为制备磁光薄膜和纳米结构材料的一种新颖且低成本的方法。这种沉积方法可以精确控制薄膜特性,并可以沉积新颖的磁性几何形状。可以通过调节镀液中的沉积电位和离子浓度来沉积和控制多层和合金。镍/钴合金已从氨基磺酸盐,硫酸盐和氯化物溶液中电沉积到Au基底上。使用实时光谱椭圆仪在410-750 nm光谱范围内同时测量44个波长的原位监测光学特性。原位测量的优点是可以在空气中氧化膜之前确定材料的微结构特性(厚度,密度和粗糙度)。在205至1000 nm的光谱范围内进行了异位变角光谱椭偏测量。

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