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Base-promoted hydrolytic dehydrogenation of ammonia borane catalyzed by noble-metal-free nanoparticles

机译:Base-promoted水解的脱氢由noble-metal-free氨硼烷催化纳米粒子

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摘要

Hydrogen is a potentially ideal alternative energy source for both environmental and economic reasons. The development of sustainable, efficient, and economical catalysts towards hydrogen generation from hydrogen storage materials (e.g., ammonia borane, AB) has been one of the active and challenging research areas. In this work, noble-metal-free CuCoMo nanoparticles (NPs) without any surfactant or support have been prepared via a facile co-reduction method at room temperature and used as highly efficient catalysts for hydrogen generation from an aqueous AB solution. Compared to their monometallic and bimetallic counterparts, the obtained trimetallic Cu0.72Co0.18Mo0.1 NPs exhibit the highest catalytic activity for the hydrolysis of AB with a total turnover frequency (TOF) value of 46.0 min(-1) at room temperature under ambient atmosphere. The Cu0.72Co0.18Mo0.1 NPs only needed 0.63 min to completely hydrolyse AB in the presence of a basic solution (NaOH, 1 M) with a TOF value as high as 119.0 min(-1) at room temperature, which is among the highest values of all the noble-metal-free catalysts ever reported for the same reaction, wherein NaOH plays an important role in improving the catalytic activity. In addition, it is found that the hydrogen generation rate can be improved by adding a base (e.g., NaOH, KOH, etc.) into the reaction solution, while the presence of NH4+ species (e.g., NH3 center dot H2O, NH4Cl, etc.) is unfavorable for the hydrolysis of AB.
机译:氢是一种潜在的理想的替代能源对环境和经济来源的原因。高效和经济的催化剂根据储氢生成氢气材料(如氨硼烷,AB)之一的活跃和具有挑战性的研究领域。这项工作,noble-metal-free CuCoMo纳米颗粒(NPs)没有任何表面活性剂或支持通过简单co-reduction方法准备房间温度和用作高效催化剂对氢生成的水AB的解决方案。双金属同行,trimetallic获得Cu0.72Co0.18Mo0.1 NPs表现出最高的AB的水解的催化活性总营业额的频率(TOF)值为46.0分钟(1)在室温环境下的气氛。0.63分钟完全水解AB存在一个基本的解决方案(氢氧化钠、1米)TOF价值高达119.0分钟(1)房间温度是最高的价值观之一所有的noble-metal-free催化剂报道同样的反应,在氢氧化钠中扮演一个提高催化的作用活动。可以提高氢产生率添加一个基地(如氢氧化钠、KOH等)进入反应的解决方案,而NH4 +的存在物种(例如,NH3中心导水、NH4Cl,等等)。不宜AB的水解。

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