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An Alternative Approach For Separating Metallic Nitride Fullerenes (MNFs) From Nanomaterial Mixtures

机译:一种纳米材料混合物将金属氮化物富勒烯(MNF)分离的替代方法

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Metallic nitride fullerenes (MNFs) are of interest to fundamental studies and applications. However, MNF sample availability for these studies has been limited. The lack of samples is related to the currently used chromatographic (HPLC) separation protocol, a tedious approach that is solvent intensive, expensive, and has a limited throughput. To address these drawbacks, we developed an alternative method (non-chromatographic) for removing contaminant C{sub}60 and C{sub}70 empty-cage fullerenes and other classical metallofullerenes (i.e. non-nitrogen containing endohedrals) from soot extracts. Specifically, we present a purification approach based on differences of cage reactivity of MNFs versus other fullerenes. Results indicate that reactive silica can preferentially bind to contaminant fullerenes and metallofullerenes using our "Stir and Filter Approach" (SAFA). With this process, fullerene contaminants are immobilized onto reactive silica, while unreacted MNFs remain in the filtrate. In this manner, purified samples of Sc{sub}3N@C{sub}80 are readily obtained.
机译:金属氮化物富勒烯(MNFS)对基础研究和应用感兴趣。但是,这些研究的MNF样本可用性受到限制。缺乏样品与目前使用的色谱(HPLC)分离方案有关,这种繁琐的方法是溶剂密集型,昂贵,并且具有有限的吞吐量。为了解决这些缺点,我们开发了一种用于除去污染物C {Sub} 60和C {Sub} 70的替代方法(非色谱)空笼富勒烯和其他古典金属膦烯(即含有胚乳的非氮的胚胎)。具体地,我们提出了一种基于MNFS与其他富勒烯的笼式反应性差异的纯化方法。结果表明,使用我们的“搅拌和过滤方法”(SAFA),反应性二氧化硅可以优先与污染物富勒烯和金属霉菌结合。通过该方法,将富勒烯污染物固定在反应性二氧化硅上,而未反应的MNF在滤液中保留在滤液中。以这种方式,容易获得SC {sub} 3n @ c {sub} 80的纯化样本。

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