Anchoring Bimetal Zinc–Aluminum Sites on Nitrogen-Doped Carbon Catalyst for Efficient Conversion of CO2 Into Cyclic Carbonates

IF 1.9 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Wanchang Li, Shuo Wang, Yifei Huang, Limao Fan, Lei Zhang, Kai Huang
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Abstract

The design and synthesis of efficient carbon-based materials incorporating multifunctional sites is prospective technology for converting carbon dioxide (CO2) 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 CO2 with propylene oxide (PO) under traditional or mild conditions. NH3-TPD and CO2-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 CO2 conversion and suggests new approaches for designing catalytic sites in carbon-based catalysts for CO2 capture and utilization.

设计和合成具有多功能位点的高效碳基材料是将二氧化碳(CO2)转化为高价值化学品的前瞻性技术。在此,利用富氮聚苯胺(PANI)和 ZnAl-LDH 通过水热法和原位热解法合成了具有锌铝双金属位点的氮掺杂碳催化剂(ZnAl-NC)。在四丁基溴化铵(TBAB)存在下,ZnAl-NC-400 在无溶剂条件下表现出优异的催化活性,在传统或温和条件下实现了 CO2 与环氧丙烷(PO)的高产率(97.2% 或 98.5%)。NH3-TPD 和 CO2-TPD 结果表明,催化活性的增强源于酸碱协同效应,Zn 和 Al 物种具有路易斯酸位点,而 PANI 基体具有丰富的路易斯碱位点。研究了煅烧温度对催化剂形态、结构和性能的影响,以及催化剂的回收利用和对各种环氧化物的适应性。这项研究提出了一种用于二氧化碳转化的高效催化剂,并为设计用于二氧化碳捕获和利用的碳基催化剂的催化位点提出了新的方法。
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来源期刊
ChemistrySelect
ChemistrySelect Chemistry-General Chemistry
CiteScore
3.30
自引率
4.80%
发文量
1809
审稿时长
1.6 months
期刊介绍: ChemistrySelect is the latest journal from ChemPubSoc Europe and Wiley-VCH. It offers researchers a quality society-owned journal in which to publish their work in all areas of chemistry. Manuscripts are evaluated by active researchers to ensure they add meaningfully to the scientific literature, and those accepted are processed quickly to ensure rapid online publication.
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