磁性
高定向热解石墨
凝聚态物理
材料科学
密度泛函理论
库仑
铜
极化(电化学)
化学物理
铁磁性
热解炭
电子
自旋极化
自旋(空气动力学)
自旋态
电子结构
石墨
电荷密度
磁场
电子密度
分子物理学
再分配(选举)
纳米技术
作者
Miloš Baljozović,Shiladitya Karmakar,André L. Fernandes Cauduro,M. Shyam Sundar,Marco Lozano,Manish Kumar,Diego Soler-Polo,Andreas K. Schmid,Ashutosh V. Bedekar,Pavel Jelinek,Karl-Heinz Ernst
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-01-30
标识
DOI:10.1021/acsnano.5c15791
摘要
We report the emergence of adsorption-induced magnetism from heterohelicene molecules on a nonmagnetic Cu(100) surface. Spin-polarized low-energy electron microscopy measurements reveal spin-dependent electron reflectivity for enantiopure 7,12,17-trioxa[11]helicene (TO[11]H) monolayers, indicating the formation of a spin-polarized state localized in the topmost copper layer. Control experiments on clean Cu(100) and TO[11]H on highly oriented pyrolytic graphite show no such effect, excluding artifacts and chirality-induced spin selectivity as origins. Spin-polarized density functional theory calculations with hybrid functionals attribute the magnetism to strong chemisorption, which induces hybridization between the molecular HOMO and copper s- and d-states, driving asymmetric spin-polarized charge redistribution at the interface. An extended Newns-Anderson-Grimley model incorporating on-site Coulomb repulsion in Cu d-orbitals reproduces the emergence of interfacial spin polarization above a threshold interaction strength, highlighting the key roles of hybridization parameters and Coulomb correlation. These findings reveal a mechanism for inducing magnetism at molecule-metal interfaces without inherently magnetic components, offering avenues for engineering spin-polarized states in organic-inorganic hybrid systems.
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