Mohamed Ahmed El Ruby, Kasemphaibulsuk Nualjarose, Rohani Sohrab, Barghi Shahzad
Department of Chemical and Biochemical Engineering, The University of Western Ontario, London, Ontario N6A 5B9, Canada.
J Nanosci Nanotechnol. 2010 Mar;10(3):1998-2008. doi: 10.1166/jnn.2010.2102.
This study probes the dependence of titania nanotube arrays nanoarchitecture on different synthesis parameters in viscous electrolytes. Titania nanotube arrays were synthesized in glycerol, ethylene glycol and carboxymethylcellulose as base materials. The effects of anodization voltage and time, as well as chemical composition and pH of the electrolyte bath were studied. Nanotube arrays with an inner diameter ranging from 16 to 91 nm, and wall thickness ranging from 7 to 29 nm were fabricated in a glycerol-water electrolyte. Water content of 5 wt% or higher was found to be essential for nanotubes fabrication in glycerol electrolyte. Diameter and length were influenced by varying water content above 5 wt%. Nanotube length was found to be time dependent at high pH values. A pH value of 6 was favorable for fabrication of highly ordered and continuous nanotube arrays with length up to 900 nm. Using modified ethylene glycol (containing 2 wt% and 0.5 wt% NH4F) instead of glycerol, resulted in nanotube length up to 430 nm after 1.5 hr anodization time. With a minor modification of electrochemical anodization cell, we successfully fabricated double-sided titania nanotube arrays layers with a total thickness of 9.5 microm for the first time. Nantube arrays were successfully fabricated in 2 wt% sodium carboxy mythylcellulose aqueous electrolyte (CMC electrolyte). These nanotube arrays had an inner diameter of 42 nm similar to those fabricated in 2 wt% urea-ethylene glycol electrolyte but their length was 450 nm.
本研究探究了粘性电解质中二氧化钛纳米管阵列纳米结构对不同合成参数的依赖性。以甘油、乙二醇和羧甲基纤维素为基础材料合成了二氧化钛纳米管阵列。研究了阳极氧化电压和时间以及电解液的化学成分和pH值的影响。在甘油 - 水电解质中制备了内径范围为16至91纳米、壁厚范围为7至29纳米的纳米管阵列。发现5 wt%或更高的水含量对于在甘油电解质中制备纳米管至关重要。高于5 wt%的不同水含量会影响纳米管的直径和长度。发现在高pH值下纳米管长度与时间有关。pH值为6有利于制备长度达900纳米的高度有序且连续的纳米管阵列。使用改性乙二醇(含有2 wt%和0.5 wt% NH4F)代替甘油,在阳极氧化1.5小时后得到长度达430纳米的纳米管。通过对电化学阳极氧化池进行微小改进,我们首次成功制备了总厚度为9.5微米的双面二氧化钛纳米管阵列层。在2 wt%的羧甲基纤维素钠水性电解质(CMC电解质)中成功制备了纳米管阵列。这些纳米管阵列的内径为42纳米,与在2 wt%尿素 - 乙二醇电解质中制备的类似,但其长度为450纳米。