Parmar Saurabh Vinod, Avasare Vidya, Pal Sourav
Department of Chemistry, Sir Parashurambhau College, Pune, India.
Department of Chemistry, Ashoka University, Sonipat, India.
Front Chem. 2021 Nov 19;9:778718. doi: 10.3389/fchem.2021.778718. eCollection 2021.
Carbon dioxide utilization is necessary to reduce carbon footprint and also to synthesize value-added chemicals. The transition metal pincer complexes are attractive catalysts for the hydrogenation of carbon dioxide to formic acid. There is a need to understand the factors affecting the catalytic performance of these pincer complexes through a structure-activity relationship study using computational methods. It is a well-established fact that aromatic functionalities offer stability and selectivity to transition metal catalysts. However, their impact on the performance of the catalysts is lesser known in the case of metal pincer complexes. Hence, it is necessary to investigate the catalytic performance of Mn(I)NNN pincer complexes with variably activated aromatic functionalities. In this context, 15 catalysts are designed by placing different types of aromatic rings at the pincer carbons and two terminal nitrogen of Mn(I)NNN pincer complexes. A benzene moiety, placed at C2-C3 carbons of Mn(I)NNN pincer complex with identical aromatic groups at the terminal nitrogen, is found to be most efficient toward CO hydrogenation than the rest of the catalysts. On the other hand, when N,N-dimethyl aniline is placed at C2-C3 carbons of Mn(I)NNN pincer complexes, then the catalytic performance is significantly decreased. Thus, the present study unravels the impact of aromatic groups in Mn(I)NNN pincer complexes toward the catalytic hydrogenation of carbon dioxide.
二氧化碳的利用对于减少碳足迹以及合成增值化学品来说是必要的。过渡金属钳形配合物是将二氧化碳氢化成甲酸的有吸引力的催化剂。需要通过使用计算方法的构效关系研究来了解影响这些钳形配合物催化性能的因素。一个公认的事实是,芳香族官能团为过渡金属催化剂提供稳定性和选择性。然而,在金属钳形配合物的情况下,它们对催化剂性能的影响鲜为人知。因此,有必要研究具有可变活化芳香族官能团的Mn(I)NNN钳形配合物的催化性能。在这种情况下,通过在Mn(I)NNN钳形配合物的钳形碳和两个末端氮处放置不同类型的芳香环来设计15种催化剂。发现在末端氮处具有相同芳香族基团的情况下,置于Mn(I)NNN钳形配合物的C2-C3碳处的苯部分对CO氢化的效率比其他催化剂更高。另一方面,当将N,N-二甲基苯胺置于Mn(I)NNN钳形配合物的C2-C3碳处时,催化性能会显著降低。因此,本研究揭示了Mn(I)NNN钳形配合物中的芳香族基团对二氧化碳催化氢化的影响。