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首页> 外文期刊>ACS Omega >Polymeric Ruthenium Porphyrin-Functionalized Carbon Nanotubes and Graphene for Levulinic Ester Transformations into γ-Valerolactone and Pyrrolidone Derivatives
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Polymeric Ruthenium Porphyrin-Functionalized Carbon Nanotubes and Graphene for Levulinic Ester Transformations into γ-Valerolactone and Pyrrolidone Derivatives

机译:聚合钌卟啉官能化碳纳米管和石墨烯可将酯蛋白转化为γ-戊内酯和吡咯烷酮衍生物

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Polymeric ruthenium porphyrin-functionalized carbon nanotubes (Ru-PP/CNTs) were prepared by the metallation of polymeric porphyrin-functionalized carbon nanotubes (PP/CNTs) with Ru_(3)(CO)_(12), whereas PP/CNTs were obtained by the condensation of terephthaldehyde and pyrrole in the presence of CNTs. The Ru-PP/CNTs have a thin layer of highly cross-linked polymeric ruthenium porphyrin coating over the CNT surface via strong π–π stacking interactions, thus showing a bilayered structure with an amorphous polymeric outer surface and an internal CNT core. Polymeric ruthenium porphyrin-functionalized reduced graphene oxide (Ru-PP/RGO) was prepared with a synthetic procedure similar to Ru-PP/CNTs, with RGO as the internal core. Both Ru-PP/CNTs and Ru-PP/RGO showed excellent catalytic performance toward hydrogenation of biomass-related ethyl levulinate (EL) to γ-valerolactone (GVL) with Ru-centered porphyrin units as the catalytic active species. Under optimized reaction conditions, a GVL yield higher than 99% with a complete conversion of EL was observed over both Ru-PP/CNTs and Ru-PP/RGO. In addition to GVL preparation, the versatile Ru-PP/CNTs can efficiently promote reductive amination of EL with various amines for the synthesis of pyrrolidone derivatives, with the corresponding yields ranging from 96.3 to 88.7%. Moreover, the composite materials of both Ru-PP/CNTs and Ru-PP/RGO behave as heterogeneous catalysts in the reaction system and can be easily reused.
机译:通过用Ru_(3)(CO)_(12)金属化聚合物卟啉官能化的碳纳米管(PP / CNT),制备了钌-卟啉官能化的碳纳米管(Ru-PP / CNT),而得到了PP / CNT在碳纳米管存在下,对苯二甲醛和吡咯的缩合反应。 Ru-PP / CNT通过强烈的π-π堆积相互作用在CNT表面上形成一层薄层的高度交联的聚合钌卟啉涂层,从而显示出具有无定形聚合物外表面和内部CNT核心的双层结构。用类似于Ru-PP / CNTs的合成方法,以RGO为内芯,制备了聚合钌卟啉官能化的还原氧化石墨烯(Ru-PP / RGO)。 Ru-PP / CNTs和Ru-PP / RGO均表现出优异的催化性能,其中以Ru为中心的卟啉单元为催化活性物质,将生物质相关的乙酰丙酸乙酯(EL)加氢成γ-戊内酯(GVL)。在优化的反应条件下,在Ru-PP / CNT和Ru-PP / RGO上均观察到GVL产率高于99%,且EL完全转化。除了制备GVL外,通用的Ru-PP / CNT还可以有效地促进EL与各种胺的还原胺化反应,以合成吡咯烷酮衍生物,相应的收率范围为96.3%至88.7%。此外,Ru-PP / CNT和Ru-PP / RGO的复合材料在反应体系中均作为多相催化剂,可以很容易地重复使用。

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