首页|溶剂诱导法制备不同形貌ZIF-67衍生Co@NC催化剂对苯酚加氢活性的影响

溶剂诱导法制备不同形貌ZIF-67衍生Co@NC催化剂对苯酚加氢活性的影响

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通过溶剂控制生长和氩气气氛热解两步法制备了不同形貌的Co@NC催化剂,得到了具有多面体形貌的Co@NC-67P-450和具有叶片状的Co@NC-67L-450.以苯酚加氢为研究对象评价了两个催化剂的性能,在 160℃,3 MPa的条件下,环己醇的选择性均在 99.9%以上,Co@NC-67P-450催化剂的苯酚转化率为 96.9%,高于Co@NC-67L-450催化剂的 75.4%.在反应过程中,Co3O4 被还原为 Co0,Co@NC-67P-450的 CoNx含量为 47.2%,高于Co@NC-67L-450(33.4%),这些共同促进了其苯酚加氢活性.同时以氨合成为探针反应,研究了CoNx对N2 和H2 的催化活性,进一步证实了其对苯酚加氢活性的促进作用.通过磁分离可以回收钴基催化剂,并表现出较高的稳定性.
Effect of Different Morphologies Induced by Solvent on ZIF-67 Derived Co@NC for Catalytic Phenol Hydrogenation
The Co@NC catalysts with different morphologies were prepared by two step process,solvent control growth and pyrolysis method.The polyhedral Co@NC-67P-450 catalyst has a relatively high CoNx content and exhibits excellent phenol hydrogenation activity(conversion 96.9%)at 160℃,3 MPa,which is higher than that of leaf shaped Co@NC-67L-450 catalyst(conversion 75.4%).We demonstrated Co3O4 was reduced to the Co0 during the reaction.Moreover,CoNx species contribute to the superior hydrogenation activity of phenol.The Co-based catalysts can be easily recovered through the magnetic separation and performed the high stability.

metal organic frameworksCo-based catalystmorphologyphenol hydrogenation

王东伟、马占伟、李静、冯虎林、胡斌

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中国科学院兰州化学物理研究所低碳催化与二氧化碳利用全国重点实验室(筹)

羰基合成与选择氧化国家重点实验室 甘肃兰州 730000

中国科学院大学,北京 100049

福建紫金矿冶测试技术有限公司,福建龙岩 364200

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金属有机骨架 钴基催化剂 形貌 苯酚加氢

National Natural Science Foundation of ChinaScience and Technology Plan of Gansu ProvinceYouth Innovation Promotion Association of CAS

2210219420JR10RA0442022427

2024

分子催化
中国科学院兰州化学物理研究所

分子催化

CSTPCD北大核心
影响因子:2.622
ISSN:1001-3555
年,卷(期):2024.38(5)