Peng Song-Song, Liu Sai, Shao Xiang-Bin, Zhang Kai, Liu Yang, Wang Yang, Tan Peng, Yan Juntao, Sun Lin-Bing
State Key Laboratory of Materials-Oriented Chemical Engineering, Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM), College of Chemical Engineering, Nanjing Tech University, 30 South Puzhu Road, Nanjing 211816, China.
College of Chemistry and Environmental Engineering, Wuhan Polytechnic University, Wuhan 430023, China.
J Colloid Interface Sci. 2025 Jan 15;678(Pt B):88-94. doi: 10.1016/j.jcis.2024.09.019. Epub 2024 Sep 3.
Considerable attention has been paid to the preparation of single-atom solid base catalysts (SASBCs) owing to their high activity and maximized utilization of basic sites. At present, the reported fabrication methods of SASBCs, such as two-step reduction strategy and sublimation capture strategy, require high temperature. Such a high activation temperature is easy to cause the sublimation loss of alkali or alkaline earth metal atoms and destructive to the support structure. Herein, a new SASBC, Ca/UiO-67-BPY, is fabricated, in which the alkaline earth metal Ca sites are immobilized onto N-rich metal-organic framework UiO-67-BPY at room temperature. The results show that the atomic configuration of Ca single atoms is coordinated by two N atoms in the framework. The obtained Ca SASBC possesses ordered structure and exhibits high product yield of 87.2% in the Knoevenagel reaction between benzaldehyde and malononitrile. Furthermore, thanks to the Ca single atoms sites anchored on UiO-67-BPY, the Ca/UiO-67-BPY catalyst also shows good stability during cycles. This work might offer new insight in designing SASBCs for different base-catalyzed reactions.
由于单原子固体碱催化剂(SASBCs)具有高活性和碱位点的最大化利用,因此受到了广泛关注。目前,已报道的SASBCs制备方法,如两步还原策略和升华捕获策略,都需要高温。如此高的活化温度容易导致碱金属或碱土金属原子的升华损失,并对载体结构造成破坏。在此,制备了一种新型的SASBC,即Ca/UiO-67-BPY,其中碱土金属Ca位点在室温下固定在富氮金属有机框架UiO-67-BPY上。结果表明,Ca单原子的原子构型由框架中的两个N原子配位。所制备的Ca SASBC具有有序结构,在苯甲醛与丙二腈的Knoevenagel反应中表现出87.2%的高产物收率。此外,由于Ca单原子位点锚定在UiO-67-BPY上,Ca/UiO-67-BPY催化剂在循环过程中也表现出良好的稳定性。这项工作可能为设计用于不同碱催化反应的SASBCs提供新的思路。