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首页> 外文期刊>Materials >Dihydrogen Phosphate Stabilized Ruthenium(0) Nanoparticles: Efficient Nanocatalyst for The Hydrolysis of Ammonia-Borane at Room Temperature
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Dihydrogen Phosphate Stabilized Ruthenium(0) Nanoparticles: Efficient Nanocatalyst for The Hydrolysis of Ammonia-Borane at Room Temperature

机译:磷酸二氢盐稳定的钌(0)纳米颗粒:室温下氨-硼烷水解的高效纳米催化剂

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Intensive efforts have been devoted to the development of new materials for safe and efficient hydrogen storage. Among them, ammonia-borane appears to be a promising candidate due to its high gravimetric hydrogen storage capacity. Ammonia-borane can release hydrogen on hydrolysis in aqueous solution under mild conditions in the presence of a suitable catalyst. Herein, we report the synthesis of ruthenium(0) nanoparticles stabilized by dihydrogenphosphate anions with an average particle size of 2.9 ± 0.9 nm acting as a water-dispersible nanocatalyst in the hydrolysis of ammonia-borane. They provide an initial turnover frequency (TOF) value of 80 min−1 in hydrogen generation from the hydrolysis of ammonia-borane at room temperature. Moreover, the high stability of these ruthenium(0) nanoparticles makes them long-lived and reusable nanocatalysts for the hydrolysis of ammonia-borane. They provide 56,800 total turnovers and retain ~80% of their initial activity even at the fifth catalytic run in the hydrolysis of ammonia-borane at room temperature.
机译:已经致力于开发用于安全有效地储氢的新材料。其中,氨硼烷由于其高的重量氢存储容量而似乎是有前途的候选者。氨硼烷可以在适当的催化剂存在下,在温和的条件下在水溶液中水解时释放出氢。在这里,我们报告了钌(0)纳米颗粒的合成,该纳米颗粒由磷酸二氢根阴离子稳定,平均粒径为2.9±0.9 nm,在氨硼烷的水解中用作水分散性纳米催化剂。在室温下,由氨硼烷水解产生的氢气中,它们提供的初始转换频率(TOF)值为80 min -1 。此外,这些钌(0)纳米粒子的高稳定性使其成为氨-硼烷水解的长寿命且可重复使用的纳米催化剂。它们提供了56,800的总周转率,即使在室温下氨-硼烷水解的第五次催化运行中,也保留了约80%的初始活性。

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