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Formation of electro-conductive titanium oxide fine particles by pulsed UV laser irradiation

机译:脉冲紫外激光辐照形成导电氧化钛微粒

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Nano-submicron particles of sub-stoichiometric titanium oxide (TiOx) were synthesized by irradiation of TiO2 particles dispersed in liquid with a Nd:YAG pulsed UV laser, and their physicochemical and electrochemical properties were examined. After laser irradiation for 1 h, spherical oxide particles of up to ca. 300 nm in diameter were formed regardless of the liquid used, however the reduction of TiO2 largely depended on the liquid: acetonitrile most strongly promoted the reduction of TiO2 by UV laser irradiation. The mean valence of titanium in TiOx synthesized in acetonitrile was ca. 3.5, which is comparable to that of the most-reduced Magneli phase, Ti4O7. While the electrical conductivity of as-washed TiOx was significantly low, annealing at 900 °C in hydrogen dramatically improved conductivity. The oxidation resistance of TiOx was examined by cyclic voltammetry to a high potential (1.5 V) using a MEA under PEMFC operating conditions. TiOx showed a much lower anodic corrosion current at > 1.0 V than XC-72R carbon, which suggests that TiOx may exhibit superior oxidation resistance as a catalyst support material at high potentials.
机译:通过用Nd:YAG脉冲紫外激光辐照分散在液体中的TiO2颗粒,合成了亚化学计量的二氧化钛(TiOx)的纳米亚微米颗粒,并对其理化和电化学性能进行了研究。激光辐照1 h后,球形氧化物颗粒的直径可达约。无论使用何种液体,都可以形成300 nm的直径,但是TiO2的还原很大程度上取决于液体:乙腈最有力地促进了UV激光辐照下TiO2的还原。在乙腈中合成的TiOx中钛的平均价为。 3.5,与还原度最高的Magneli相Ti4O7相当。尽管洗涤后的TiOx的电导率非常低,但在900°C的氢气中退火显着提高了电导率。在PEMFC操作条件下,使用MEA通过循环伏安法测试了TiOx的抗氧化性,使其达到高电势(1.5 V)。 TiOx在> 1.0 V时显示出比XC-72R碳低得多的阳极腐蚀电流,这表明TiOx在高电势下可作为催化剂载体材料表现出优异的抗氧化性。

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