首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Core-shell nanostructured heteropoly acid-functionalized metal-organic frameworks: Bifunctional heterogeneous catalyst for efficient biodiesel production
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Core-shell nanostructured heteropoly acid-functionalized metal-organic frameworks: Bifunctional heterogeneous catalyst for efficient biodiesel production

机译:核 - 壳纳米结构杂多酸官能化金属 - 有机框架:用于高效生物柴油生产的双官能异质催化剂

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We developed a new class of acid-base bifunctional heterogeneous catalyst, which can be used in the transesterification of rapeseed oil for highly efficient biodiesel production. A simple Keggin-type HPA (heteropoly acid) functionalization on the surface of zeolitic imidazolate framework-8 (ZIF-8) nanoparticles, through an imidazolium medium, results in the bifunctional heterogeneous catalysts. The hybrid materials exhibit a novel hierarchically core-shell nanostructure, which provides a large surface area and interconnectivity, leading to a thin wrinkled HPA shell at the surface of rhombic dodecahedral ZIF-8 core crystals. A strong O-N hybrid bonding through an electrostatic effect in the hybrid materials demonstrates a strong interaction between the Keggin and imidazole units, which is one of the main driving forces of hybrid materials formation. Additionally, the transformation of the HPA/ZIF-8 ratio in the hybrid materials changes the acidity and basicity, thereby affecting catalyst activity. We used these bifunctional core-shell materials as environmentally friendly heterogeneous catalysts in the transesterification of rapeseed oil with methanol to produce a high-quality biodiesel. Of particular interest, the HPA-functionalized ZIF-8 catalyst with a proper HPA/ZIF-8 ratio shows a high FAME conversion of 98.02% along with high recyclability because of the sufficiently large surface area and bi-functionality of strong acidity. Furthermore, the HPA-functionalized ZIF-8 catalyst shows a high reaction efficiency of the benzyl alcohol oxidation process, indicating a great potential of our catalyst to a wide range of applications.
机译:我们开发了一类新的酸碱双官能异质催化剂,可用于油菜籽油的酯交换,用于高效的生物柴油生产。通过咪唑核介质的沸石咪唑酯型框架-8(ZIF-8)纳米颗粒表面上的简单Keggin型HPA(杂多酸)官能化导致双官能异质催化剂。杂交材料表现出一种新型的分层核 - 壳纳米结构,其提供大的表面积和互连,导致菱形十二型ZIF-8核晶体表面的薄皱的HPA壳。通过混合材料中的静电效果的强烈O-N杂交粘合证明了Keggin和咪唑单元之间的强相互作用,这是混合材料形成的主要驱动力之一。另外,杂化材料中HPA / ZIF-8比的转化改变了酸度和碱度,从而影响催化剂活性。我们使用这些双官能核 - 壳材料作为环保型异质催化剂,其用甲醇的菜籽油酯交换中产生高质量的生物柴油。特别感兴趣的是,具有适当的HPA / ZIF-8的HPA官能化ZIF-8催化剂显示出98.02%的高分转化率,并且由于具有强大的表面积和强酸性的双官能度,具有高的再循环性。此外,HPA官能化ZIF-8催化剂显示出苄醇氧化过程的高反应效率,表明我们催化剂的巨大潜力为广泛的应用。

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