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Investigating the Trimethylaluminium/Water ALD Process on Mesoporous Silica by In Situ Gravimetric Monitoring

机译:通过原位重力监测研究中孔二氧化硅上的三甲基铝/水ALD工艺

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摘要

A low amount of AlOx was successfully deposited on an unordered, mesoporous SiO2 powder using 1–3 ALD (Atomic Layer Deposition) cycles of trimethylaluminium and water. The process was realized in a self-built ALD setup featuring a microbalanceand a fixed particle bed. The reactor temperature was varied between 75, 120, and 200 °C. The self-limiting nature of the deposition was verified by in situ gravimetric monitoring for all temperatures. The coated material was further analyzed by nitrogen sorption, inductively coupled plasma-optical emission spectroscopy, powder X-ray diffraction, high-resolution transmission electron microscopy, attenuated total reflection Fourier transformed infrared spectroscopy, and elemental analysis. The obtained mass gains correspond to average growth between 0.81–1.10 Å/cycle depending on substrate temperature. In addition, the different mass gains during the half-cycles in combination with the analyzed aluminum content after one, two, and three cycles indicate a change in the preferred surface reaction of the trimethylaluminium molecule from a predominately two-ligand exchange with hydroxyl groups to more single-ligand exchange with increasing cycle number. Nitrogen sorption isotherms demonstrate (1) homogeneously coated mesopores, (2) a decrease in surface area, and (3) a reduction of the pore size. The experiment is successfully repeated in a scale-up using a ten times higher substrate batch size.
机译:使用三甲基铝和水的1-3 ALD(原子层沉积)循环,将少量AlOx成功沉积在无序的介孔SiO2粉末上。该过程是通过具有微量天平和固定颗粒床的自建ALD装置实现的。反应器温度在75、120和200℃之间变化。通过对所有温度进行原位重量监测,证实了沉积物的自限性。通过氮气吸附,电感耦合等离子体-光学发射光谱,粉末X射线衍射,高分辨率透射电子显微镜,衰减全反射傅立叶变换红外光谱和元素分析对涂层材料进行进一步分析。所获得的质量增益对应于0.81-1.10Å/循环之间的平均生长量,具体取决于基板温度。另外,在半个循环中不同的质量增加与一,两个和三个循环后分析的铝含量相结合,表明三甲基铝分子的优选表面反应从主要的两个配体与羟基交换变为随着周期数的增加,更多的单配体交换。氮吸附等温线表明(1)均匀包覆的中孔;(2)表面积减小;(3)孔径减小。使用放大十倍的基板批量,成功地按比例放大了该实验。

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