双金属
催化作用
锚固
铝
锌
碳纤维
氮气
兴奋剂
无机化学
材料科学
化学
化学工程
冶金
有机化学
复合材料
复合数
工程类
光电子学
结构工程
作者
Wanchang Li,Shuo Wang,Yifei Huang,Limao Fan,Lei Zhang,Kai Huang
标识
DOI:10.1002/slct.202402622
摘要
Abstract The design and synthesis of efficient carbon‐based materials incorporating multifunctional sites is prospective technology for converting carbon dioxide (CO 2 ) into high‐value chemicals. Here, nitrogen‐doped carbon catalysts (ZnAl‐NC) with bimetal zinc–aluminum sites were synthesized using nitrogen‐rich polyaniline (PANI) and ZnAl‐LDH through hydrothermal and in situ pyrolysis methods. ZnAl‐NC‐400, in the presence of tetrabutylammonium bromide (TBAB), exhibited excellent catalytic activity without solvent, achieving high yields (97.2% or 98.5%) in the cycloaddition of CO 2 with propylene oxide (PO) under traditional or mild conditions. NH 3 ‐TPD and CO 2 ‐TPD results indicated that the enhanced catalytic activity resulted from the acid–base synergistic effect, involving Lewis acid sites from Zn and Al species and abundant Lewis base sites from the PANI matrix. The impact of calcination temperature on catalyst morphology, structure, and performance was investigated, along with catalyst recycling and adaptability to various epoxides. This work presents an efficient catalyst for CO 2 conversion and suggests new approaches for designing catalytic sites in carbon‐based catalysts for CO 2 capture and utilization.
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