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将钌纳米颗粒溅射沉积到用咪唑鎓离子液体改性的氧化铝上:合成、表征及催化作用

Sputtering-deposition of Ru nanoparticles onto Al2O3 modified with imidazolium ionic liquids: synthesis, characterisation and catalysis.

作者信息

Foppa Lucas, Luza Leandro, Gual Aitor, Weibel Daniel E, Eberhardt Dario, Teixeira Sérgio R, Dupont Jairton

机构信息

Institute of Chemistry, UFRGS, Avenida Bento Gonçalves, 9500, Porto Alegre 91501-970 RS, Brazil.

出版信息

Dalton Trans. 2015 Feb 14;44(6):2827-34. doi: 10.1039/c4dt03039g.

Abstract

Well-distributed Ru nanoparticles (Ru-NPs) were produced over Al(2)O(3) supports modified with covalently anchored imidazolium ionic liquids (ILs) containing different anions and cation lateral alkyl chain lengths by simple sputtering from a Ru foil. These Ru-NPs were active catalysts for the hydrogenation of benzene. Furthermore, depending on the nature of the IL used to modify the support (hydrophilic or hydrophobic), different catalytic behaviours were observed. Turnover numbers (TON) as high as 27 000 with a turnover frequency (TOF) of 2.73 s(-1) were achieved with Ru-NPs of 6.4 nm supported in Al(2)O(3) modified with an IL containing the N(SO(2)CF(3))2(-) anion, whereas higher initial cyclohexene selectivities (ca. 20% at 1% benzene conversion) were attained for Ru-NPs of 6.6 nm in the case where Cl(-) and BF(4)(-) anions were used. Such observations strongly suggest that thin layers of ILs surround the NP surface, modifying the reactivity of these catalytic systems. These findings open a new window of opportunity in the development of size-controlled Ru-NPs with tuneable reactivity.

摘要

通过从钌箔进行简单溅射,在共价锚定了含有不同阴离子和阳离子侧链烷基长度的咪唑鎓离子液体(ILs)修饰的Al₂O₃载体上制备了分布均匀的钌纳米颗粒(Ru-NPs)。这些Ru-NPs是苯加氢反应的活性催化剂。此外,根据用于修饰载体的IL的性质(亲水性或疏水性),观察到了不同的催化行为。负载在含有N(SO₂CF₃)₂⁻阴离子的IL修饰的Al₂O₃上的6.4 nm Ru-NPs实现了高达27000的周转数(TON)和2.73 s⁻¹的周转频率(TOF),而在使用Cl⁻和BF₄⁻阴离子的情况下,6.6 nm的Ru-NPs获得了更高的初始环己烯选择性(在1%苯转化率下约为20%)。这些观察结果强烈表明,IL的薄层围绕着NP表面,改变了这些催化体系的反应活性。这些发现为开发具有可调反应活性的尺寸可控Ru-NPs打开了一扇新的机会之窗。

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