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Photocatalytic water splitting for hydrogen production under visible light on Ir and Co ionized titania nanotube

机译:Ir和Co离子化二氧化钛纳米管上可见光下光催化分解水制氢。

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Highly dispersed iridium and cobalt metal particles (average 3 nm) were introduced in the texture of the synthesized titania nanotube (TiNT) by ion-exchange method, which were found to be effective photocatalysts for the production of stoichiometric hydrogen and oxygen by the splitting of water under the visible light irradiation. Thus prepared lr(IE)/TiNT and Co(IE)/TiNT catalysts evolved hydrogen at the rate of 7.05 μmol/h/0.5 g and 1.27 μmol/h/0.5 g in aqueous methanol and 2.73 μmol/h/0.5 g and 0.67 (xmol/h/0.5 g in pure water, respectively. The band gap energies were decreased to 2.5 eV and 2.6 eV from 3.1 eV of bare TiNT by introducing highly dispersed Ir and Co nanoparticles in the texture of TiNT, respectively, resulting in the improved photo-response towards visible light. However, visible light photo-activity for water splitting was not observed on the large aggregated Ir and Co particles on TiNT prepared by impregnation method. The prepared catalysts were characterized by FE-SEM, HR-TEM, SEMEDX, XRD, UV-vis DRS spectra, photocurrent density and BET surface area.
机译:通过离子交换法将高度分散的铱和钴金属颗粒(平均3 nm)引入到合成的二氧化钛纳米管(TiNT)的织构中,被发现是通过分解产生化学计量的氢和氧的有效光催化剂。在可见光照射下加水。如此制备的lr(IE)/ TiNT和Co(IE)/ TiNT催化剂在甲醇水溶液中以7.05μmol/ h / 0.5 g和1.27μmol/ h / 0.5 g的速率放出氢气,在2.73μmol/ h / 0.5 g和0.67的速率下放出氢气(分别在纯水中的xmol / h / 0.5 g。通过在TiNT的织构中分别引入高度分散的Ir和Co纳米粒子,将带隙能量从3.1 eV的裸TiNT降低至2.5 eV和2.6 eV。浸渍法制得的TiNT上大的Ir和Co聚集大颗粒未见可见光分解水的可见光活性,并用FE-SEM,HR-TEM, SEMEDX,XRD,UV-vis DRS光谱,光电流密度和BET表面积。

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