Yang Huimin, Xi Shibo, Guo Na, Wang Mu, Liu Lingmei, Lyu Pin, Yu Xiaolong, Li Jing, Xu Haomin, Hai Xiao, Li Zejun, Li Xinzhe, Sun Tao, Zhao Xiaoxu, Han Yu, Yu Wei, Wu Jie, Zhang Chun, Fei Honghan, Koh Ming Joo, Lu Jiong
Department of Chemistry, National University of Singapore, Singapore 117543, Singapore.
Institute of Chemical and Engineering Sciences, Singapore 627833, Singapore.
Natl Sci Rev. 2022 May 25;10(1):nwac100. doi: 10.1093/nsr/nwac100. eCollection 2023 Jan.
Rational design and synthesis of catalytically active two-dimensional (2D) materials with an abundance of atomically precise active sites in their basal planes remains a great challenge. Here, we report a ligand exchange strategy to exfoliate bulk [Cu(OH)][OS(CH)SO] cuprate crystals into atomically thin 2D cuprate layers ([Cu(OH)]). The basal plane of 2D cuprate layers contains periodic arrays of accessible unsaturated Cu(II) single sites (2D-CuSSs), which are found to promote efficient oxidative Chan-Lam coupling. Our mechanistic studies reveal that the reactions proceed via coordinatively unsaturated CuO(II) single sites with the formation of Cu(I) species in the rate-limiting step, as corroborated by both operando experimental and theoretical studies. The robust stability of 2D-CuSSs in both batch and continuous flow reactions, coupled with their recyclability and good performance in complex molecule derivatization, render 2D-CuSSs attractive catalyst candidates for broad utility in fine chemical synthesis.
合理设计与合成在其基面具有大量原子精确活性位点的催化活性二维(2D)材料仍然是一项巨大挑战。在此,我们报道一种配体交换策略,将块状[Cu(OH)][OS(CH)SO]铜酸盐晶体剥离成原子级薄的二维铜酸盐层([Cu(OH)])。二维铜酸盐层的基面包含可及的不饱和Cu(II)单原子位点(2D-CuSSs)的周期性阵列,发现其能促进高效的氧化Chan-Lam偶联反应。我们的机理研究表明,反应通过配位不饱和的CuO(II)单原子位点进行,在限速步骤中形成Cu(I)物种,这得到了原位实验和理论研究的证实。2D-CuSSs在间歇和连续流动反应中具有强大的稳定性,再加上其可回收性以及在复杂分子衍生化中的良好性能,使其成为精细化学合成中广泛应用的有吸引力的催化剂候选物。