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Hydrotalcite framework stabilized ruthenium nanoparticles (Ru/HTaL): efficient heterogeneous catalyst for the methanolysis of ammonia-borane

机译:水滑石骨架稳定的钌纳米颗粒(Ru / HTaL):氨硼烷甲醇分解的高效多相催化剂

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Ruthenium nanoparticles stabilized by a hydrotalcite framework (Ru/HTaL) were prepared by following a 2-step procedure comprising a wet-impregnation of ruthenium(III) chloride precatalyst on the surface of HTaL followed by an ammonia-borane (NH$_{3}$BH$_{3}$) reduction of precatalyst on the HTaL surface all at room temperature. The characterization of Ru/HTaL was done by using various spectroscopic and visualization methods including ICP-OES, P-XRD, FTIR, $^{11}$B NMR, XPS, BFTEM, and HRTEM. The sum of the results gained from these analyses has revealed the formation of well-dispersed and highly crystalline ruthenium nanoparticles with a mean diameter of 1.27 ± 0.8 nm on HTaL surface. The catalytic performance of Ru/HTaL in terms of activity, selectivity, and stability was investigated in the methanolysis of ammonia-borane (NH$_{3}$ BH$_{3}$, AB), which has been considered as one of the most promising chemical hydrogen storage materials. It was found that Ru/HTaL can catalyse methanolysis of AB effectively with an initial turnover frequency (TOF) value of 392.77 min-$^{-1}$ at conversion (>95%) even at room temperature. Moreover, the catalytic stability tests of Ru/HTaL in AB methanolysis showed that Ru/HTaL acts as a highly stable and reusable heterogeneous catalyst in this reaction by preserving more than 95% of its initial activity even at the 5th recycle.
机译:遵循两步法,包括在HTaL表面湿浸渍氯化钌(III)预催化剂,然后再用氨硼烷(NH $ _ {3),通过水滑石骨架(Ru / HTaL)稳定化的钌纳米颗粒。 } $ BH $ _ {3} $)均在室温下还原HTaL表面上的前催化剂。 Ru / HTaL的表征通过使用各种光谱和可视化方法完成,包括ICP-OES,P-XRD,FTIR,$ ^ {11} $ B NMR,XPS,BFTEM和HRTEM。从这些分析获得的结果的总和表明,在HTaL表面上形成了平均直径为1.27±0.8 nm的分散良好且高度结晶的钌纳米颗粒。在氨硼烷(NH $ _ {3} $ BH $ _ {3} $,AB)的甲醇分解中研究了Ru / HTaL在活性,选择性和稳定性方面的催化性能。最有前途的化学储氢材料。发现Ru / HTaL甚至在室温下,在转化率(> 95%)下,初始转换频率(TOF)值为392.77 min-$ ^ {-1} $时,仍能有效催化AB的甲醇分解。而且,Ru / HTaL在AB甲醇中的催化稳定性测试表明,Ru / HTaL在该反应中通过保持超过95%的初始活性(即使在第5次循环中)也可作为高度稳定且可重复使用的多相催化剂。

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