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首页> 外文期刊>Advanced Sustainable Systems >Synergistic Catalysis of Co‐Zr/CNx Bimetallic Nanoparticles Enables Reductive Amination of Biobased Levulinic Acid
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Synergistic Catalysis of Co‐Zr/CNx Bimetallic Nanoparticles Enables Reductive Amination of Biobased Levulinic Acid

机译:地理协同催化Co Zr / CNx双金属纳米粒子使的还原胺化Biobased乙酰丙酸

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摘要

Abstract Bimetallic synergy and carbon–nitrogen doping can contribute to enhanced catalytic activity due to the strong electronic state and unique geometrical structure. In this work, a series of biomass‐derived Co‐M bimetallic CN doped catalysts (Co‐M@Chitosan‐X; M = Zr, Ni, Fe, Cu, In; X denotes the molar percentage of M) are prepared via simple oil bath reflow and annealing. The Co‐Zr@Chitosan‐X catalysts are determined to contain alloys (Co‐Zr), metal‐carbon bonds (Co‐C, Zr‐C), metal‐nitrogen bonds (Co‐N, Zr‐N), and metal oxides (Co3O4, ZrO2) through a series of characterizations, in which graphite‐coated alloys and metal oxides are found to be the catalytically active species. The doping of the second metal results in a significant enhancement for the number of active sites in the catalyst, and the d‐band center is shifted toward a deviation from the Fermi energy level. Among the tested catalysts, Co‐Zr@Chitosan‐20 exhibits superior catalytic activity for the reductive amination of biobased levulinic acid to 5‐methyl‐2‐pyrrolidone in 99.3% selectivity and 92.8% yield. This non‐noble metal bimetallic synergistic catalytic protocol opens an avenue for efficiently producing biomass‐derived nitrogenous chemicals.
机译:抽象双金属协同作用和碳氮兴奋剂有助于增强的催化由于强大的电子状态和活动独特的几何结构。一系列生物质衍生公司应承担的M双金属CN掺杂催化剂(Co检测M@Chitosan量X;铜、;通过简单的油浴回流和准备退火。包含合金(Co Zr)应承担的决定,金属量碳键(公司提供有关C, Zr量C),金属氮债券(公司应承担的N,锆量N),和金属氧化物(Co3O4,锆)通过一系列的特征哪些石墨涂层合金和金属氧化物发现催化地活跃的物种。第二金属掺杂的结果显著增强活动的数量网站的催化剂,d带中心转向费米能级的偏离的水平。公司应承担Zr@Chitosan 20展品优越的催化活动biobased的还原胺化作用乙酰丙酸5甲基2吡咯烷酮应承担应承担的99.3%选择性和92.8%的收益率。双金属协同催化协议打开高效生产的途径生物质量推导出含氮的化学物质。

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