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Aziridine-Functionalized Multiwalled Carbon Nanotubes: Robust and Versatile Catalysts for the Oxygen Reduction Reaction and Knoevenagel Condensation

机译:氮丙啶官能化的多壁碳纳米管:健壮和通用的氧还原反应和Knoevenagel缩合催化剂。

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This paper describes the exohedral N-decoration of multiwalled carbon nanotubes (MWCNTs) with NH-aziridine groups via [2 + 1] cycloaddition of a tert-butyl-oxycarbonyl nitrene followed by controlled thermal decomposition of the cyclization product. The chemical grafting with N-containing groups deeply modifies the properties of the starting MWCNTs, generating new surface microenvironments with specific base (Bronsted) and electronic properties. Both of these features translate into a highly versatile single-phase heterogeneous catalyst (MW@N-Az) with remarkable chemical and electrochemical performance. Its surface base character promotes the Knoevenagel Condensation with activity superior to that of related state of the art N-doped and N-decorated carbon nanomaterials; the N-induced electronic surface redistribution drives the generation of high-energy surface "C" sites suitable for O-2, activation and its subsequent electrochemical reduction (ORR).
机译:本文介绍了通过[2 +1]叔丁基-氧羰基腈的环加成,然后对环化产物进行热分解,对带有NH-氮丙啶基团的多壁碳纳米管(MWCNT)进行外表面N修饰。用含氮基团进行化学接枝会大大改变起始MWCNT的特性,从而产生具有特定碱(布朗斯台德)和电子特性的新表面微环境。这两个特征都转化为具有出色的化学和电化学性能的高度通用的单相非均相催化剂(MW @ N-Az)。它的表面碱特性促进了Knoevenagel缩合反应,其活性优于相关技术水平的N掺杂和N装饰的碳纳米材料。 N诱导的电子表面重新分布驱动适合O-2的高能表面“ C”位的生成,活化及其随后的电化学还原(ORR)。

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