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Fabrication of efficient and cost effective multi-podal TiO_2 nanotube array photo-anode on replacing conventional platinum counter electrode by graphite foil

机译:用石墨箔替代常规铂对电极的高效且经济有效的多瓣膜TiO_2纳米管阵列光阳极的制造

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摘要

Cost effective graphite foil (GF) were used as counter electrode (CE) to fabricate multi-podal TiO2 nasnotube array (MTNA) via electrochemical anodization route. Moreover, the MTNA fabricated while using GF as CE were greater in length than that obtained while using PF as CE. Correspondingly, the changed dimensional parameters in such anodized MTNA prepared photo-anode resulted appreciable enhancement in photocurrent density from 18 to 21.8 mA/cm2 under 1 sun illumination (100 mW/cm2). The use of platinum foil as counter electrode shows feeble degree of deterioration despite its appreciable nature of inertness. The corresponding amount of platinum lost by the CE is being added to the electrolyte which in turn contaminates the MTNA in the working electrode. As such nanotubes with purposeful composition are not being produced on using platinum foil as CE. Replacing platinum foil with graphite one, the purposeful composition in nanotubes is possible despite GF shows deterioration as well, as graphite (carbon) gets evaporated on annealing at 500 °C to obtain a desired anatase phase which is not possible in case of platinum contamination.
机译:使得经济高效的石墨箔(GF)用作对电极(Ce),以通过电化学阳极氧化途径制造多瓣型TiO2鼻孔阵列(MTNA)。此外,使用GF作为Ce制造的MTNA的长度大于使用PF作为Ce的同时获得的。相应地,在这种阳极氧化MTNA中的改变的尺寸参数制备的光电阳极在18至21.8mA / cm 2下的光电流密度的明显增强(100mW / cm2)。尽管其具有惰性性质,但铂箔作为对电极的使用表现出微弱的劣化。通过CE损失的相应量的铂被添加到电解质中,电解质反过来污染工作电极中的mTNA。由于具有有目的的组合物的纳米管,因此不在使用铂箔作为Ce。用石墨替换铂箔,纳米管中的有目的的组合物也是可能的,尽管GF也显示出劣化,因为石墨(碳)在500℃的退火上蒸发以获得所需的锐钛矿相,在铂污染的情况下是不可能的。

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