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Experimental and theoretical insights into binary Zn-SBA-15/KI catalysts for the selective coupling of CO2 and epoxides into cyclic carbonates under mild conditions

机译:对二元Zn-SBA-15 / KI催化剂的实验和理论见解,用于在温和条件下将CO2和环氧化物选择性偶联成环状碳酸酯

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摘要

The combination of a metal-modified SBA-15 catalyst with potassium iodide was developed as heterogeneous dual catalysts for chemical fixation of CO2 to cyclic carbonates. It was observed that the binary ZnSBA- 15/KI catalysts were the most efficient among various metal-modified SBA-15/KI catalysts and showed an excellent synergetic effect in promoting the reaction under mild conditions. Moreover, the effects of reaction parameters on cycloaddition of CO2 with propylene oxide (PO) to propylene carbonate (PC) were optimized. Under the optimal conditions determined, the Zn-SBA-15/KI catalytic system was also versatile in CO2 cycloaddition with other epoxides. Additionally, the mechanistic details for the fixation of CO2 into a cyclic carbonate catalyzed by SBA-15/KI and Zn-SBA-15/KI were also contrastively elucidated using the density functional theory (DFT) method. The DFT results suggested that the zinc-modified and unmodified catalysts showed different coupling modes of CO2, and the ring-opening reaction was the ratedetermining step in the SBA-15/KI catalyzed cycloaddition reaction, but the zinc-modified SBA-15/KI catalysts could enhance the CO2 cycloaddition, as the formation of a stable complex was beneficial to CO2 trapping. As a result, the ring-closing reaction became the rate-determining step in the Zn-SBA-15/KI catalyzed cycloaddition reaction, which was a promising result to guide the catalyst design for CO2 conversion.
机译:开发了金属改性的SBA-15催化剂与碘化钾的组合,作为将CO2化学固定为环状碳酸酯的非均相双重催化剂。观察到二元ZnSBA-15 / KI催化剂在各种金属改性的SBA-15 / KI催化剂中是最有效的,并且在温和条件下具有促进反应的出色协同作用。此外,优化了反应参数对环氧丙烷(PO)与碳酸亚丙酯(PC)环化加成反应的影响。在确定的最佳条件下,Zn-SBA-15 / KI催化体系在与其他环氧化物的CO2环加成反应中也很通用。此外,还使用密度泛函理论(DFT)方法对比阐明了SBA-15 / KI和Zn-SBA-15 / KI将CO2固定为环状碳酸酯的机理。 DFT结果表明,锌改性和未改性的催化剂表现出不同的CO2偶联方式,开环反应是SBA-15 / KI催化环加成反应中的定级步骤,而锌改性的SBA-15 / KI催化剂可以增强CO2的环加成反应,因为形成稳定的络合物有利于CO2的捕集。结果,在Zn-SBA-15 / KI催化的环加成反应中,闭环反应成为了决定速率的步骤,这对于指导CO2转化催化剂的设计是很有希望的结果。

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