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负载于具有大孔道的二氧化硅气凝胶上的小尺寸镁铝层状双氢氧化物纳米片:活化后的结构性质和碱性催化性能

Small-Sized Mg-Al LDH Nanosheets Supported on Silica Aerogel with Large Pore Channels: Textural Properties and Basic Catalytic Performance after Activation.

作者信息

Wang Lijun, Wang Yusen, Wang Xiaoxia, Feng Xiaolan, Ye Xiao, Fu Jie

机构信息

School of Chemistry and Chemical Engineering, Shaoxing University, Shaoxing 312000, China.

出版信息

Nanomaterials (Basel). 2018 Feb 16;8(2):113. doi: 10.3390/nano8020113.

Abstract

Layered double hydroxides (LDHs) have been widely used as an important subset of solid base catalysts. However, developing low-cost, small-sized LDH nanoparticles with enhanced surface catalytic sites remains a challenge. In this work, silica aerogel (SA)-supported, small-sized Mg-Al LDH nanosheets were successfully prepared by one-pot coprecipitation of Mg and Al ions in an alkaline suspension of crushed silica aerogel. The supported LDH nanosheets were uniformly dispersed in the SA substrate with the smallest average radial diameter of 19.2 nm and the thinnest average thickness of 3.2 nm, both dimensions being significantly less than those of the vast majority of LDH nanoparticles reported. The SA/LDH composites also showed large pore volume (up to 1.3 cm3·g) and pore diameter (>9 nm), and therefore allow efficient access of reactants to the edge catalytic sites of LDH nanosheets. In a base-catalyzed Henry reaction of benzaldehyde with nitromethane, the SA/LDH catalysts showed high reactant conversions and favorable stability in 6 successive cycles of reactions. The low cost of the SA carrier and LDH precursors, easy preparation method, and excellent catalytic properties make these SA/LDH composites a competitive example of solid-base catalysts.

摘要

层状双氢氧化物(LDHs)作为固体碱催化剂的一个重要子集已被广泛应用。然而,开发具有增强表面催化位点的低成本、小尺寸LDH纳米颗粒仍然是一个挑战。在这项工作中,通过在粉碎的二氧化硅气凝胶(SA)碱性悬浮液中一锅共沉淀镁离子和铝离子,成功制备了SA负载的小尺寸Mg-Al LDH纳米片。负载的LDH纳米片均匀分散在SA基质中,平均径向直径最小为19.2 nm,平均厚度最薄为3.2 nm,这两个尺寸均显著小于绝大多数已报道的LDH纳米颗粒。SA/LDH复合材料还显示出大的孔体积(高达1.3 cm3·g)和孔径(>9 nm),因此能够使反应物有效地接触到LDH纳米片的边缘催化位点。在苯甲醛与硝基甲烷的碱催化亨利反应中,SA/LDH催化剂在连续6个反应循环中表现出高反应物转化率和良好的稳定性。SA载体和LDH前驱体的低成本、简便的制备方法以及优异的催化性能使这些SA/LDH复合材料成为固体碱催化剂的一个有竞争力的范例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4237/5853744/f89c84d006b2/nanomaterials-08-00113-sch001.jpg

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