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FeSO4水溶液超薄液層電沉積物的形貌選擇及其磁性研究
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晶體材料國家重點實驗室

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國家自然科學(xué)基金資助(項目號50802055)


Pattern Selection and the Magnetic Property of Electrodeposits Grown within a Ultrathin FeSO4 Solution Layer
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    摘要:

    獨特的超薄液層電沉積實驗系統(tǒng)可為我們研究微納米尺度金屬及金屬氧化物電沉積物的形貌形成和形貌選擇提供有益的幫助。在不同的生長驅(qū)動力條件下,電沉積物將呈現(xiàn)不同的形貌特征。此外,具有微納米尺度的磁性金屬電沉積物(如利用超薄液層電沉積所獲得的Co纖維)中的磁疇分布還將受到沉積物的厚度和寬度等幾何尺寸的影響。本文利用FeSO<sub>4</sub>水溶液進(jìn)行超薄液層電沉積實驗研究,重點考察沉積物的形貌選擇及其磁性特征。在較大的沉積電流條件下,可獲得納米量級厚度的纖維狀電沉積物;而在較小的沉積電流條件下,獲得的薄膜狀電沉積物的厚度達(dá)到了亞微米量級。在此基礎(chǔ)上,我們利用磁力顯微鏡檢測具有不同形貌的Fe的電沉積物經(jīng)自發(fā)磁化以及經(jīng)不同外加恒穩(wěn)磁場磁化后所形成的表面雜散磁場分布,以此推斷磁疇在樣品中的分布規(guī)律。最后,利用交變梯度磁強計檢測所得電沉積物的磁性特征,所得實驗結(jié)果表明樣品的易磁化軸位于電沉積物生長所在平面,不同方向飽和磁化強度的大小取決于樣品的生長方向、幾何尺寸及其形貌特征。

    Abstract:

    The unique ultrathin electrolyte layer deposition process is helpful for the investigation of the pattern formation and the pattern selection of metal and metal oxides with the micro-nanometer scale. Under different growth driving force, the electrodeposits will present the different patterns. Moreover, the distribution of magnetic domains formed in the magnetic metals, for instance the micro-nanometer Co filaments obtained through the ultrathin electrolyte layer electrodeposition process, will be affected by their geometry such as the thickness and the width remarkbely. In this paper, through the ultrathin FeSO<sub>4</sub> solution layer electrodeposition process, the iron electrodeposits with the filament or the film like morphology grown under the different electrodeposition currents were obtained. Compared with the Fe filaments with nanometer thickness formed under the higher electrodeposition current, the film like electrodeposit formed under the lower electrodeposition current presented the sub-micron thickness. Further, based on the magnetic force microscopy (MFM), we measured the distribution of the stray magnetic field around the electrodeposits with different morphology, which is resulted from the magnetic domains formed in the electrodeposits through the self-assembled process or the magnetization process under applied static magnetic field. Finally, the magnetic property of samples were measured with the alternating gradient magnetometer (AGM), the obtained hysteresis loops presented that the ease axis is located in the plane of the electrodeposits growth, and the saturation magnetization at different directions should be determined by the growth direction, the geometry, and the morphological characteristics of electrodeposits.

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于光偉,劉宏,王繼揚. FeSO4水溶液超薄液層電沉積物的形貌選擇及其磁性研究[J].稀有金屬材料與工程,2020,49(1):209~215.[Yu Guangwei, Liu Hong, Wang Jiyang. Pattern Selection and the Magnetic Property of Electrodeposits Grown within a Ultrathin FeSO4 Solution Layer[J]. Rare Metal Materials and Engineering,2020,49(1):209~215.]
DOI:10.12442/j. issn.1002-185X.20181086

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  • 收稿日期:2018-10-24
  • 最后修改日期:2018-11-21
  • 錄用日期:2018-12-05
  • 在線發(fā)布日期: 2020-02-16
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