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首页> 外文期刊>Chemistry: A European journal >A facile route to metal nitride clusterfullerenes by using guanidinium salts: A selective organic solid as the nitrogen source
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A facile route to metal nitride clusterfullerenes by using guanidinium salts: A selective organic solid as the nitrogen source

机译:利用胍盐制备金属氮化物簇富勒烯的简便途径:选择性有机固体作为氮源

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摘要

Using guanidinium salts 1 and 2 as the new nitrogen sources, metal nitride clusterfullerenes (NCFs) based on a variety of metals (Dy, Sc, Y, Gd, Lu, and mixed metals Sc/Dy, Sc/Gd, Sc/Lu, and Lu/Ce) have been synthesized based on a new "selective organic solid" (SOS) route. The synthesis of Dy-NCFs by using Dy/1 was studied in detail, and the optimum molar ratio of 1/Dy/C has been determined to be 2.5:1:10. For several representative metals such as Sc, Y, Gd, Dy, and Sc/Dy, we quantitatively compared the yield of M _3N@C_(80) synthesized by the SOS route with the reported "reactive gas atmosphere" route, thereby indicating that the yield of M_3N@C_(80) by using 1 could be comparable to that obtained by the reactive gas atmosphere route. Three other nitrogen sources (3-5) were also studied for comparison, which were mixed with Dy metal but did not result in the formation of Dy-NCF. A possible reaction scheme for the solid-state reaction of 1, metal, and graphite is proposed. The SOS route appears to be a general route for the synthesis of NCFs that promises both high selectivity of NCFs and high reproducibility of the fullerene yield. Another advantages of the SOS route compared to the reported "trimetallic nitride template" (TNT) process and the reactive gas atmosphere route is that no additional heating pretreatment is needed, thus simplifying the procedure and being much more facile. An SOS for NCFs: A new "selective organic solid" (SOS) route for the facile synthesis of metal nitride clusterfullerenes (NCFs) by using guanidinium thiocyanate as the new nitrogen source (see scheme) has been developed. It promises both the high selectivity of NCFs and the high reproducibility of fullerene yield.
机译:使用胍盐1和2作为新的氮源,基于多种金属(Dy,Sc,Y,Gd,Lu和混合金属Sc / Dy,Sc / Gd,Sc / Lu的金属氮化物簇富勒烯(NCF),和Lu / Ce)已基于新的“选择性有机固体”(SOS)路线进行了合成。详细研究了使用Dy / 1合成Dy-NCFs,确定的最佳摩尔比1 / Dy / C为2.5:1:10。对于几种代表性金属,例如Sc,Y,Gd,Dy和Sc / Dy,我们定量比较了SOS路线与报告的“反应性气氛”路线合成的M _3N @ C_(80)的产率,从而表明通过使用1可以得到M_3N @ C_(80)的产率,这与通过反应性气体气氛路线获得的产率相当。还研究了其他三个氮源(3-5)进行比较,将其与Dy金属混合,但未形成Dy-NCF。提出了一种可能的反应方案,用于1,金属和石墨的固态反应。 SOS路线似乎是NCF合成的一般路线,它保证了NCF的高选择性和富勒烯收率的高再现性。与已报道的“三金属氮化物模板”(TNT)工艺和反应性气体气氛路线相比,SOS路线的另一个优势是不需要额外的加热预处理,从而简化了过程并且更加方便。用于NCF的SOS:已开发出一种新的“选择性有机固体”(SOS)路线,该路线可通过使用硫氰酸胍作为新的氮源来轻松合成金属氮化物簇富勒烯(NCF)(请参见方案)。它保证了NCF的高选择性和富勒烯收率的高再现性。

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