Yin Jinwen, Wang Jing, Sun Mingzi, Yang Yajie, Lyu Jia, Wang Lei, Dong Xinglong, Ye Chenliang, Bao Haibo, Guo Jun, Chen Bo, Zhou Xichen, Zhai Li, Li Zijian, He Zhen, Luo Qinxin, Meng Xiang, Ma Yangbo, Zhou Jingwen, Lu Pengyi, Wang Yunhao, Niu Wenxin, Zheng Zijian, Han Yu, Zhang Daliang, Xi Shibo, Yuan Ye, Huang Bolong, Guo Peng, Fan Zhanxi
Department of Chemistry, City University of Hong Kong, Kowloon, Hong Kong, China.
Hong Kong Branch of National Precious Metals Material Engineering Research Center (NPMM), City University of Hong Kong, Kowloon, Hong Kong, China.
Nat Commun. 2025 Jan 3;16(1):370. doi: 10.1038/s41467-024-55775-w.
Prussian blue analogs (PBAs), as a classical kind of microporous materials, have attracted substantial interests considering their well-defined framework structures, unique physicochemical properties and low cost. However, PBAs typically adopt cubic structure that features small pore size and low specific surface area, which greatly limits their practical applications in various fields ranging from gas adsorption/separation to energy conversion/storage and biomedical treatments. Here we report the facile and general synthesis of unconventional hexagonal open PBA structures. The obtained hexagonal copper hexacyanocobaltate PBA prisms (H-CuCo) demonstrate large pore size and specific surface area of 12.32 Å and 1273 m g, respectively, well exceeding those (5.48 Å and 443 m g) of traditional cubic CuCo PBA cubes (C-CuCo). Significantly, H-CuCo exhibits much superior gas uptake capacity over C-CuCo toward carbon dioxide and small hydrocarbon molecules. Mechanism studies reveal that unsaturated Cu sites with planar quadrilateral configurations in H-CuCo enhance the gas adsorption performance.
普鲁士蓝类似物(PBAs)作为一类经典的微孔材料,因其明确的骨架结构、独特的物理化学性质和低成本而备受关注。然而,PBAs通常采用立方结构,其孔径小且比表面积低,这极大地限制了它们在从气体吸附/分离到能量转换/存储以及生物医学治疗等各个领域的实际应用。在此,我们报道了一种简便通用的方法来合成非常规的六边形开放PBA结构。所获得的六氰合钴酸铜六边形PBA棱柱(H-CuCo)的孔径和比表面积分别为12.32 Å和1273 m g,远超过传统立方CuCo PBA立方体(C-CuCo)的(5.48 Å和443 m g)。值得注意的是,H-CuCo对二氧化碳和小分子烃类的气体吸收能力远优于C-CuCo。机理研究表明,H-CuCo中具有平面四边形构型的不饱和铜位点增强了气体吸附性能。