化学
结(造纸)
自旋电子学
手性(物理)
化学物理
自旋极化
立体中心
分子
凝聚态物理
三叶结
三叶草
自旋(空气动力学)
电子
铁磁性
物理
纽结理论
材料科学
手征异常
量子力学
对映选择合成
有机化学
热力学
复合材料
催化作用
考古
历史
费米子
Nambu–Jona Lasinio模型
作者
Danyang Zhang,Yutao Sang,Tapan Kumar Das,Zhao Guan,Ni Zhong,Chun‐Gang Duan,Wei Wang,Jonas Fransson,Ron Naaman,Hai‐Bo Yang
摘要
Knot-like structures were found to have interesting magnetic properties in condensed matter physics. Herein, we report on topologically chiral molecular knots as efficient spintronic chiral material. The discovery of the chiral-induced spin selectivity (CISS) effect opens the possibility of manipulating the spin orientation with soft materials at room temperature and eliminating the need for a ferromagnetic electrode. In the chiral molecular trefoil knot, there are no stereogenic carbon atoms, and chirality results from the spatial arrangements of crossings in the trefoil knot structures. The molecules show a very high spin polarization of nearly 90%, a conductivity that is higher by about 2 orders of magnitude compared with that of other chiral small molecules, and enhanced thermal stability. A plausible explanation for these special properties is provided, combined with model calculations, that supports the role of electron-electron interaction in these systems.
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