首页> 外文期刊>International journal of hydrogen energy >Eco-friendly dehydrogenation of dimethylamine- borane catalyzed by core-shell-looking tri-metallic RuNiPd nanoclusters loaded on white-lowering horse-chestnut seed
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Eco-friendly dehydrogenation of dimethylamine- borane catalyzed by core-shell-looking tri-metallic RuNiPd nanoclusters loaded on white-lowering horse-chestnut seed

机译:在七叶树籽上负载核壳状三金属RuNiPd纳米团簇催化二甲胺-硼烷环保脱氢反应

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摘要

Generally, white-flowering horse-chestnut seed (WFHC) found in roadsides, parks and gardens, which spills around and causes environmental pollution, is defined as waste-bio material. This study is quite remarkable as it gives WFHC a new field of usage and literally prioritizes the environment. Here, waste-bio WFHC was tested as supporter for tri-metallic RuNiPd nanoclusters in the eco-friendly dehydrogenation of dimethylamine-borane (DMAB). Core-shell-looking tri-metallic RuNiPd@WFHC, with 264.09 +/- 45.55 nm particle size, were in-situ synthesized throughout dehydrogenation of DMAB at 35.0 +/- 0.1 degrees C. The WFHC and tri-metallic Ru2.00Ni1.86Pd1.00@WFHC NCs were characterized by advanced analysis and their surface morphologies were studied in detail using adsorption models. The N2 adsorption-desorption and logarithmic-Freundlich plots indicated that surface morphologies have heterogeneous multi-layer and typical Type-III isotherm with meso-porous surfaces. Also, detailed kinetic studies were actualized on the dehydrogenation of DMAB catalyzed by tri-metallic Ru2.00Ni1.86Pd1.00@WFHC NCs with 158 h-1 TOF value.(c) 2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:一般来说,在路边、公园和花园中发现的白花七叶树种子(WFHC)会溢出并造成环境污染,被定义为废弃生物材料。这项研究非常了不起,因为它为 WFHC 提供了一个新的使用领域,并且从字面上优先考虑环境。在这里,测试了废物生物WFHC作为三金属RuNiPd纳米团簇在二甲胺-硼烷(DMAB)环保脱氢反应中的载体。在35.0 +/- 0.1°C下,DMAB脱氢过程中原位合成了粒径为264.09 +/- 45.55 nm的核壳状三金属RuNiPd@WFHC。通过先进的分析对WFHC和三金属Ru2.00Ni1.86Pd1.00@WFHC NCs进行了表征,并利用吸附模型详细研究了它们的表面形貌。N2吸附-脱附和对数-Freundlich图表明,表面形貌具有非均质多层和典型的III型等温线,具有介孔表面。此外,还对TOF值为158 h-1的三金属Ru2.00Ni1.86Pd1.00@WFHC NCs催化的DMAB脱氢进行了详细的动力学研究。(c) 2022 Hydrogen Energy Publications LLC.,由爱思唯尔有限公司出版。保留所有权利。

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