Bae Jinhee, Park Sun Ho, Moon Dohyun, Jeong Nak Cheon
Department of Physics and Chemistry, DGIST, Daegu, 42988, Korea.
Beamline Department, Pohang Accelerator Laboratory, Pohang, 37673, Korea.
Commun Chem. 2022 Apr 8;5(1):51. doi: 10.1038/s42004-022-00666-8.
Hydrogen bonding (H-bonding) of water molecules confined in nanopores is of particular interest because it is expected to exhibit chemical features different from bulk water molecules due to their interaction with the wall lining the pores. Herein, we show a crystalline behavior of H-bonded water molecules residing in the nanocages of a paddlewheel metal-organic framework, providing in situ and ex situ synchrotron single-crystal X-ray diffraction and Raman spectroscopy studies. The crystalline H-bond is demonstrated by proving the vibrational chain connectivity arising between hydrogen bond and paddlewheel Cu-Cu bond in sequentially connected Cu-Cu·····coordinating HO·····H-bonded HO and by proving the spatial ordering of H-bonded water molecules at room temperature, where they are anticipated to be disordered. Additionally, we show a substantial distortion of the paddlewheel Cu-centers that arises with water coordination simultaneously. Also, we suggest the dynamic coordination bond character of the H-bond of the confined water, by which an H-bond transitions to a coordination-bond at the Cu-center instantaneously after dissociating a previously coordinated HO.
限制在纳米孔中的水分子的氢键作用(H键作用)特别引人关注,因为由于其与孔壁的相互作用,预计会表现出与体相水分子不同的化学特性。在此,我们展示了存在于桨轮式金属有机框架纳米笼中的氢键合水分子的晶体行为,提供了原位和非原位同步辐射单晶X射线衍射和拉曼光谱研究。通过证明在依次连接的Cu-Cu·····配位HO·····H键合HO中氢键与桨轮式Cu-Cu键之间产生的振动链连通性,以及证明氢键合水分子在室温下的空间有序性(预计它们在此温度下是无序的),证实了晶体氢键。此外,我们还展示了随着水配位同时出现的桨轮式Cu中心的显著畸变。而且,我们提出了受限水氢键的动态配位键特征,通过这种特征,一个氢键在解离先前配位的HO后会立即在Cu中心转变为配位键。