化学
合理设计
催化作用
组合化学
烷基化
配体(生物化学)
功能群
块(置换群论)
级联
多相催化
聚合物
对偶(语法数字)
冷凝
分解
密度泛函理论
双重角色
配位聚合物
荧光
级联反应
催化循环
缩合反应
有机化学
分子
光化学
活动站点
作者
Rajesh Patra,Sumit Mondal,Tanmay Rom,Deepanshu,Avijit Kumar Paul,Debajit Sarma
标识
DOI:10.1021/acs.inorgchem.5c02672
摘要
Coordination polymers (CPs) have been widely studied as heterogeneous catalysts due to their Lewis-acid activity; however, the active site blockage from the strong metal-substrate interaction remains a challenge. As a promising alternative, hydrogen-bond-donating (HBD) catalysis, primarily driven by organic linkers, has been the area of recent interest. Thus, the judicious selection of linkers is crucial for synthesizing HBD-active CPs. In this context, biologically relevant adenine acts as an outstanding building block due to the presence of multiple binding sites. Herein, an adenine-based two-dimensional (2D) CP, SSICG-14 ([Zn (Ad)(HIPA)]·2H2O), was synthesized by a solvothermal reaction between Zn salt, adenine (Ad), and a second-HBD functional group containing ligand 5-hydroxyisophthalic acid (HIPA). SSICG-14 shows high stability and contains two HBD functional groups, -NH2 and -OH, which motivate us to utilize it as a heterogeneous catalyst for the Friedel-Crafts reaction and the cascade deacetalization-Knoevenagel condensation reaction. In both cases, SSICG-14 exhibited a high efficiency. Additionally, the importance of the strategic installation of two HBD-capable functional groups was established by comparing the efficiency of SSICG-14 with a previously reported Zn-CP without the presence of these HBD functional groups (-NH2 and -OH). The significance of these HBD sites in the catalytic transformation was further established through fluorescence studies.
科研通智能强力驱动
Strongly Powered by AbleSci AI