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A general strategy for colloidal stable ultrasmall amorphous mineral clusters in organic solvents

机译:有机溶剂中胶体稳定的超细无定形矿物簇的一般策略

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摘要

While nature exerts precise control over the size and chemical composition of minerals, this is still a challenging task for artificial syntheses. Despite its significance, until now, there are still no reports on colloidal mineral nanoparticles in the subnanometer range. Here we developed a general gas diffusion strategy using 10,12-pentacosadiynoic acid as a ligand and ethanol as a solvent to fabricate stable amorphous mineral clusters with a core size of less than 2 nm. First discovered for CaCO3, the method was successfully extended to produce monolayer protected clusters of MgCO3, SrCO3, Eu2(CO3)3, Tb2(CO3)3, Ce2(CO3)3, Cax(PO4)y, CaC2O4 and their hybrid minerals, CaxMgy(CO3)z and Cax(CO3)y(PO4)z. All the mineral clusters can be well dispersed in organic solvents like toluene, and are stable for a long period without further crystallization. Our work paves a way for the artificial synthesis of colloidal mineral clusters, which may have various uses in both fundamental research and industry.
机译:尽管自然对矿物质的大小和化学成分进行精确控制,但这对于人工合成仍然是一项艰巨的任务。尽管具有重要意义,但到目前为止,还没有关于亚纳米范围内的胶体矿物纳米颗粒的报道。在这里,我们开发了一种通用的气体扩散策略,使用10,12-戊二十二碳二烯酸作为配体,乙醇用作溶剂,以制备核心尺寸小于2 nm的稳定的无定形矿物簇。对于CaCO3的首次发现,该方法已成功扩展到生产MgCO3,SrCO3,Eu2(CO3)3,Tb2(CO3)3,Ce2(CO3)3,Cax(PO4)y,CaC2O 4 < / sub>及其杂化矿物Ca x Mg y (CO 3 z 和Ca x (CO 3 y (PO 4 z 。所有矿物簇都可以很好地分散在甲苯等有机溶剂中,并且可以长期稳定而不会进一步结晶。我们的工作为人工合成胶体矿物质团簇铺平了道路,这种胶团矿团簇在基础研究和工业上都有多种用途。

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