Unveiling the mysterious hydrocarbon – Clar’s goblet

Jishan, Wu, Tianyu, Jiao, Cong-Hui, Wu, Yu-Shuang, Zhang, Xiaohe, Miao, Shaofei, Wu, Shang-Da, Jiang
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Abstract

In the classic view, spin pairing occurs between two electrons in a chemical bond where the bonding interaction compensates for the penalty of electrostatic repulsion. It is a mystery whether spin pairing can occur between two non-bonded electrons within a molecular entity. Unveiling this elusive spin entanglement (i.e., pairing between two spatially segregated spins) at the molecular scale, is a long-standing challenge. Clar’s goblet proposed by Erich Clar in 1972, provides an ideal model to verify this unusual property. Here, we report the solution-phase synthesis of Clar’s goblet and experimental elucidation of its spin properties. Magnetic studies reveal that the two spins are spatially segregated with an average distance of 8.7 Å, and antiferromagnetically coupled in the ground state with an ES-T of –0.29 kcal/mol. Our results provide direct evidence of spin entanglement in the Clar’s goblet and may inspire the design of correlated molecular spins for quantum information technologies.
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揭开神秘碳氢化合物--克拉尔高脚杯的面纱
传统观点认为,自旋配对发生在化学键中的两个电子之间,在这种情况下,化学键的相互作用补偿了静电排斥的惩罚。自旋配对是否会发生在分子实体中两个非键合电子之间,这是一个谜。在分子尺度上揭示这种难以捉摸的自旋纠缠(即两个空间隔离的自旋之间的配对)是一项长期的挑战。埃里希-克拉克(Erich Clar)于 1972 年提出的克拉克高脚杯(Clar's goblet)为验证这种不寻常的特性提供了一个理想的模型。在此,我们报告了克拉尔高脚杯的溶液相合成及其自旋特性的实验阐释。磁学研究表明,两个自旋在空间上是分离的,平均距离为 8.7 Å,在基态下是反铁磁耦合的,ES-T 为 -0.29 kcal/mol。我们的研究结果提供了克拉尔觚中自旋纠缠的直接证据,可能会对量子信息技术中相关分子自旋的设计有所启发。
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