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Minerals with metal-organic framework structures

机译:具有金属有机骨架结构的矿物

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摘要

Metal-organic frameworks (MOFs) are an increasingly important family of advanced materials based on open, nanometer-scale metal-organic architectures, whose design and synthesis are based on the directed assembly of carefully designed subunits. We now demonstrate an unexpected link between mineralogy and MOF chemistry by discovering that the rare organic minerals stepanovite and zhemchuzhnikovite exhibit structures found in well-established magnetic and proton-conducting metal oxalate MOFs. Structures of stepanovite and zhemchuzhnikovite, exhibiting almost nanometer-wide and guest-filled apertures and channels, respectively, change the perspective of MOFs as exclusively artificial materials and represent, so far, unique examples of open framework architectures in organic minerals.
机译:金属有机框架(MOF)是基于开放式纳米级金属有机体系结构的高级材料家族,其重要性日益提高,其设计和合成均基于精心设计的亚单元的定向组装。现在,我们发现稀有有机矿物Stepanovite和zhemchuzhnikovite展现出在完善的磁性和质子传导性草酸金属MOF中发现的结构,从而证明了矿物学与MOF化学之间的出乎意料的联系。分别具有近纳米宽度和客体填充的孔洞和通道的Stepanovite和zhemchuzhnikovite的结构改变了MOF完全是人工材料的观点,并代表了迄今为止有机矿物中开放框架结构的独特示例。

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