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◆ Journal of the American Chemical Society2026-08-12

Lanthanide-Nitrogen Triple Bonds.

Zhanxin Jiang, Ziqi Hu, Jingyao Ye, Yang-Rong Yao, Xinyi Han, Weiren Cheng, Muqing Chen, Yuan-Zhi Tan, Wenjing Hong, Zheng Jiang, Bingbao Mei, Alexey A Popov, Shangfeng Yang, Su-Yuan Xie

原始摘要(英文原文)· Original abstract
Lanthanide-ligand multiple bonds are difficult to stabilize due to the dominating ionic bonding nature of lanthanide metals, and solid-state synthesis of a lanthanide complex bearing a lanthanide-nitrogen triple bond has long been expected but never been reported. Here, we stabilize the lanthanide-nitrogen triple bond in solid state for the first time, in the form of a diatomic monocation CeN+ captured in a nitrogen-substituted carbon cage C81N-, namely, CeN@C81N with two cage isomers. Single-crystal X-ray diffraction results reveal the existence of Ce≡N triple bonds with bond lengths of 1.76 Å, which is much shorter than the shortest Ce═N double bond ever recorded (2.04 Å). Quantum-chemical studies reveal the formal Ce4+ valence state with enhanced 4f electron contribution to the Ce≡N triple bond, resulting in an electronic structure of [Ce4+≡N3-]+@[C81N]- featuring an unprecedented intramolecular single-electron transfer.
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Lanthanide-Nitrogen Triple Bonds. — 科研速览 Science Skim