化学
过渡金属
离域电子
无定形固体
配体(生物化学)
晶体工程
结晶学
Crystal(编程语言)
晶体结构
金属有机骨架
超分子化学
纳米技术
化学物理
有机化学
材料科学
吸附
计算机科学
程序设计语言
催化作用
生物化学
受体
作者
Seonghun Park,Juhyung Lee,Bongkyeom Kim,Chan‐Yong Jung,Sang-Eun Bae,Joongoo Kang,Dohyun Moon,Jinhee Park
摘要
Self-assembly-based structural transition has been explored for various applications, including molecular machines, sensors, and drug delivery. In this study, we developed new redox-active metal–organic frameworks (MOFs) called DGIST-10 series that comprise π-acidic 1,4,5,8-naphthalenediimide (NDI)-based ligands and Ni2+ ions, aiming to boost ligand-self-assembly-driven structural transition and study the involved mechanism. Notably, during the synthesis of the MOFs, a single-crystal–amorphous–single-crystal structural transition occurred within the MOFs upon radical formation, which was ascribed to the fact that radicals prefer spin-pairing or through-space electron delocalization by π-orbital overlap. The radical-formation-induced structural transitions were further confirmed by the postsynthetic solvothermal treatment of isolated nonradical MOF crystals. Notably, the transient amorphous phase without morphological disintegration was clearly observed, contributing to the seminal structural change of the MOF. We believe that this unprecedented structural transition triggered by the ligand self-assembly magnifies the structural flexibility and diversity of MOFs, which is one of the pivotal aspects of MOFs.
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