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具有超稳定 Au 纳米粒子的椭圆形二氧化硅蛋黄壳磁性结构的制备及其作为高活性和可回收催化剂的应用。

Fabrication of Ellipsoidal Silica Yolk-Shell Magnetic Structures with Extremely Stable Au Nanoparticles as Highly Reactive and Recoverable Catalysts.

机构信息

School of Chemistry and Chemical Engineering, Southeast University, Jiangsu Optoelectronic Functional Materials and Engineering Laboratory , Nanjing 211189, P. R. China.

出版信息

Langmuir. 2017 Mar 21;33(11):2698-2708. doi: 10.1021/acs.langmuir.6b03873. Epub 2017 Mar 6.

Abstract

A novel strategy was reported for the fabrication of yolk-shell magnetic MFSVmS-Au nanocomposites (NCs) consisting of double-layered ellipsoidal mesoporous silica shells, numerous sub-4 nm Au nanoparticles (NPs), and magnetic Fe central cores. The hierarchical FSVmS NCs with ellipsoidal α-FeO@mSiO/mSiO as yolks/shells were first prepared through the facile sol-gel template-assisted method, and plenty of extremely stable ultrafine Au NPs were postencapsulated within interlayer cavities through the unique deposition-precipitation method mediated with Au(en)Cl compounds. Notably, ethylenediamine ligands were used to synthesize the stable cationic complexes, [Au(en)], that readily underwent the deprotonation reaction to chemically modify negatively charged mesoporous silica under alkaline conditions. The subsequent two-stage programmed hydrogen annealing initiated the in situ formation of Au NPs and the reduction of α-FeO to magnetic Fe, where the synthesized Au NPs were highly resistant to harsh thermal sintering even at 700 °C. Given its structural superiority and magnetic nature, the MFSVmS-Au was demonstrated to be a highly efficient and recoverable nanocatalyst with superior activity and reusability toward the reduction of 4-nitrophenol to 4-aminophenol, and the pristine morphology was retained after six recycling tests.

摘要

一种新型策略被报道用于制备蛋黄壳型磁性 MFSVmS-Au 纳米复合材料 (NCs),该复合材料由双层椭圆形介孔硅壳、大量亚 4nm 的 Au 纳米颗粒 (NPs) 和磁性 Fe 中心核组成。具有椭圆形 α-FeO@mSiO/mSiO 作为蛋黄/壳的分级 FSVmS NCs 首先通过简单的溶胶-凝胶模板辅助方法制备,并且大量极稳定的超细微 Au NPs 通过独特的沉积-沉淀方法在层间腔室内后封装,该方法通过 Au(en)Cl 化合物介导。值得注意的是,乙二胺配体被用于合成稳定的阳离子配合物 [Au(en)],其容易在碱性条件下通过去质子化反应来化学修饰带负电荷的介孔硅。随后的两阶段程序氢气退火引发了 Au NPs 的原位形成和 α-FeO 到磁性 Fe 的还原,其中合成的 Au NPs 即使在 700°C 下也高度耐受苛刻的热烧结。鉴于其结构优势和磁性,MFSVmS-Au 被证明是一种高效且可回收的纳米催化剂,对 4-硝基苯酚还原为 4-氨基酚具有优异的活性和可重复使用性,并且在六次回收测试后保留了原始形态。

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