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Influence of the Water/Titanium Alkoxide Ratio on the Morphology and Catalytic Activity of Titania–Nickel Composite Particles for the Hydrolysis of Ammonia Borane

机译:水/钛烷氧化物比对二氧化钛-镍复合颗粒用于氨硼烷水解的形态和催化活性的影响

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摘要

This work reports the influence of the water/titanium alkoxide ratio during the preparation of titania–nickel composite particles on their morphology and catalytic activity toward the hydrolysis of ammonia borane. The titania–nickel composite particle catalysts were fabricated by using a sol‐gel method, followed by an activation process in aqueous solution containing sodium borohydride and ammonia borane. From the scanning electron microscopy images and pore‐size distributions calculated from nitrogen sorption data, the particle dispersion was significantly enhanced at ratios above 6000, and increased with increasing water/titanium alkoxide ratio. Stoichiometric amounts of hydrogen were evolved in the presence of all of the prepared titania–nickel composite particle catalysts. The particle dispersion influenced the hydrogen evolution rate from aqueous ammonia borane solution, and the samples with the most highly dispersed particles showed the highest hydrogen evolution rate. The most active catalyst showed an apparent activation energy comparable to that of other reported catalysts and high cycle ability for the hydrolysis of ammonia borane.
机译:这项工作报道了二氧化钛-镍复合颗粒的制备过程中水/钛醇盐比率对它们的形态和对氨硼烷水解的催化活性的影响。二氧化钛-镍复合颗粒催化剂是通过溶胶-凝胶法制备的,然后在含硼氢化钠和氨硼烷的水溶液中活化。从扫描电子显微镜图像和根据氮吸附数据计算出的孔径分布来看,当比例大于6000时,颗粒分散度显着增强,并且随着水/钛醇盐比例的增加而增大。在所有制备的二氧化钛-镍复合颗粒催化剂的存在下,产生了化学计量的氢。颗粒的分散度会影响氨硼烷水溶液中氢的释放速率,而具有最高分散性的样品则显示出最高的氢释放速率。活性最高的催化剂表现出与其他报道的催化剂相当的表观活化能,并且具有高的氨硼烷水解能力。

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