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Fractionation of Rare-Earth Metallofullerenes via Reversible Uptake and Release from Reactive Silica

机译:反应性二氧化硅可逆吸收和释放对稀土金属富勒烯的分馏

摘要

Minimal research exists for non-chromatographic separations of rare-earth metallofullerenes containing di-metallic (M2), di-metallic carbide (M2C2), and tri-metallic nitride (M3N) clusters trapped inside fullerene cages. Herein, we demonstrate a non-HPLC method, (i.e., SAFA, Stir and Filter Approach) for purifying Er3N@Ih-C80, a rare-earth, metallic nitride clusterfullerene. We describe a strategic method that chemically releases rare-earth metallofullerenes (e.g., M2@C2n, M3N@C2n) trapped by aminosilica during SAFA. Recovery of metallofullerenes from spent silica represents a “green approach” because the spent silica and its useful, immobilized rare-earth metallofullerenes would have been discarded as waste material. We observe selectivity during metallofullerene uptake to aminosilica and also during its release from spent silica via addition of CS2. We describe a procedure to obtain samples enriched in M2 and M3N endohedrals. M2C2n fractions from our SAFA release process contain a wide range of higher metallofullerenes (e.g., Gd2C90 - Gd2C140 or Er2C76 - Er2C122). It is facile to obtain samples enriched in M3N@C82 - M3N@C92. Note that unreacted M3N@C80 remains in the filtrate. The strategy for handling rare-earth metallofullerenes with different degrees of reactivity toward aminosilica is also discussed.
机译:很少有人对富勒烯笼子中包含双金属(M2),双金属碳化物(M2C2)和三金属氮化物(M3N)的稀土金属富勒烯进行非色谱分离。本文中,我们证明了用于纯化Er3N @ Ih-C80(一种稀土金属氮化物簇富勒烯)的非HPLC方法(即SAFA,搅拌和过滤法)。我们描述了一种战略方法,可以在SAFA期间化学释放被氨基二氧化硅困住的稀土金属富勒烯(例如M2 @ C2n,M3N @ C2n)。从废硅石中回收金属富勒烯代表了一种“绿色方法”,因为废硅石及其有用的固定化稀土金属富勒烯将作为废料丢弃。我们观察到金属富勒烯对氨基二氧化硅的摄取以及通过添加CS2从废二氧化硅中释放的选择性。我们描述了一种程序来获取富含M2和M3N内面体的样品。我们SAFA释放过程中的M2C2n馏分包含多种高级金属富勒烯(例如Gd2C90-Gd2C140或Er2C76-Er2C122)。获得富含M3N @ C82-M3N @ C92的样品很容易。请注意,未反应的M3N @ C80保留在滤液中。还讨论了处理对氨基二氧化硅具有不同反应度的稀土金属富勒烯的策略。

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