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首页> 外文期刊>Scientific reports. >Mesoporous Silica Supported Pd-MnOx Catalysts with Excellent Catalytic Activity in Room-Temperature Formic Acid Decomposition
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Mesoporous Silica Supported Pd-MnOx Catalysts with Excellent Catalytic Activity in Room-Temperature Formic Acid Decomposition

机译:介孔二氧化硅负载Pd-的MnO x的催化剂在室温甲酸分解优异的催化活性

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摘要

For the application of formic acid as a liquid organic hydrogen carrier, development of efficient catalysts for dehydrogenation of formic acid is a challenging topic, and most studies have so far focused on the composition of metals and supports, the size effect of metal nanoparticles, and surface chemistry of supports. Another influential factor is highly desired to overcome the current limitation of heterogeneous catalysis for formic acid decomposition. Here, we first investigated the effect of support pore structure on formic acid decomposition performance at room temperature by using mesoporous silica materials with different pore structures such as KIE-6, MCM-41, and SBA-15, and achieved the excellent catalytic activity (TOF: 593?h(-1)) by only controlling the pore structure of mesoporous silica supports. In addition, we demonstrated that 3D interconnected pore structure of mesoporous silica supports is more favorable to the mass transfer than 2D cylindrical mesopore structure, and the better mass transfer provides higher catalytic activity in formic acid decomposition. If the pore morphology of catalytic supports such as 3D wormhole or 2D cylinder is identical, large pore size combined with high pore volume is a crucial factor to achieve high catalytic performance.
机译:对于甲酸作为液体有机氢载体的施用,甲酸脱氢的有效催化剂的发育是一个具有挑战性的题目,大多数研究到目前为止侧重于金属和载体的组成,金属纳米粒子的尺寸效应,以及金属纳米粒子的尺寸效应表面的表面化学。强度希望克服甲酸分解的异质催化的电流限制来克服另一个影响因素。在此,我们首先通过使用具有不同孔结构如KIE-6,MCM-41和SBA-15的介孔二氧化硅材料,研究了支持孔结构对室温下甲酸分解性能的影响,并达到了优异的催化活性( TOF:593?H(-1))仅通过控制介孔二氧化硅载体的孔结构。此外,我们证明了介孔二氧化硅载体的3D相互连接的孔结构比2D圆柱形中孔结构更有利,并且更好的传质在甲酸分解中提供更高的催化活性。如果催化载体如3D虫洞或2D缸的孔形态相同,则大孔径与高孔体积结合是实现高催化性能的关键因素。

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