化学
富勒烯
锆
碳化锆
碳化物
星团(航天器)
碳纤维
纳米技术
金属
桥接(联网)
气相
平面的
化学工程
结晶学
最大相位
相(物质)
化学物理
同素异形
铪
电子结构
晶体结构
配位复合体
碳化硼
衍射
作者
Yi Shen,Laura Abella,Yang‐Rong Yao,Qingyu Meng,Rongrong Luo,Bei Li,Zixin Wu,Josep M. Poblet,Antonio Rodríguez‐Fortea,Ning Chen
摘要
Zirconium-based endohedral metallofullerenes (EMFs) were first detected in the gas phase in 1992, but their bulk synthesis has remained elusive over the past three decades. Herein, we present the first successful synthesis of Zr-based EMFs, addressing this longstanding challenge in fullerene chemistry. By utilizing an optimized synthesis strategy with zirconium carbide as the metal source, we obtained three Zr-based carbide clusterfullerenes, namely, Zr2C2@D3h(5)-C78, Zr2C2@Ih(7)-C80, and Zr3C2@Ih(7)-C80. Single-crystal X-ray diffraction analyses revealed that the Zr2C2 clusters adopt a planar rhombic configuration bridged by a (C≡C)2- unit, while the Zr3C2 cluster exhibits a rare trifoliate geometry with a bridging (C-C)6- unit. The coordination modes in these Zr-based clusters are different from those observed in conventional organozirconium complexes, highlighting the unique coordination environments within fullerene cages. Combined experimental and theoretical studies further reveal the electronic structures of the Zr-based EMFs as (Zr2C2)6+@(C2n)6- (2n = 78, 80) and (Zr3C2)6+@(Ih(7)-C80)6-. This breakthrough in the synthesis of Zr-based EMFs not only offers new insights into the mechanisms of arc-discharge reaction and the formation of EMFs but also provides a substantial guideline for the encapsulation of new elements into fullerene cages, establishing a foundation for the design and synthesis of novel EMFs.
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