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Synthesis of Ni3Si4O10(OH)2 Porous Microspheres as Support of Pd Catalyst for Hydrogenation Reaction

机译:Ni3Si4O10(OH)2多孔微球的合成作为氢化反应PD催化剂的载体

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摘要

Nickel phyllosilicates have attracted much attention owing to their potential applications in various fields. Herein, Ni3Si4O10(OH)2 porous microspheres (NiSi-PMs) with a diameter of 1.2 to 3.2 μm were successfully fabricated via a urea-assisted hydrothermal method, and subsequently used to prepare supported Pd catalyst. Characterizations of the NiSi-PMs and the obtained catalyst, combined with the catalytic performance for the hydrogenation reaction, are presented and discussed. The BET surface area and pore volume of the NiSi-PMs were 196.2 m2 g−1 and 0.70 cm3 g−1, respectively. The Pd/NiSi-PMs catalyst exhibited remarkable catalytic activity for the hydrogenation of styrene under mild conditions, with a turnover frequency of 5234 h−1, and the catalyst was recovered and recycled for six consecutive cycles without any discernible loss of activity. H2-TPR and H2-TPD revealed that the activity of the catalysts was closely related to the adsorption property for hydrogen. The present Ni3Si4O10(OH)2 supported Pd catalyst afforded a promising and competitive candidate for heterogeneous catalysis.
机译:由于它们在各种领域的潜在应用,镍文镍吸引了很多关注。这里,通过尿素辅助水热法成功制造直径为1.2至3.2μm的Ni3 Si 4 O 10(OH)2多孔微球(NISI-PMS),随后用于制备负载的Pd催化剂。提出并讨论了NISI-PMS和所得催化剂的表征和所得催化剂的特征,并讨论。 NISI-PM的BET表面积和孔体积分别为196.2m 2 G-1和0.70cm 3 G-1。 Pd / NISI-PMS催化剂在温和条件下表现出苯乙烯的氢化的显着催化活性,具有5234h-1的周转频率,并回收催化剂并再循环六个连续循环,而不会出现任何可辨别的活性损失。 H2-TPR和H2-TPD显示催化剂的活性与氢气的吸附性密切相关。本Ni3Si4O10(OH)2支持的Pd催化剂为异质催化提供了有希望和竞争的候选者。

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