材料科学
自旋电子学
磁性
光电子学
纳米技术
化学
光致发光
轨道杂交
化学物理
凝聚态物理
分子轨道
物理
铁磁性
分子
价键理论
有机化学
作者
Shuyi Wu,Ruo Lan Qian,C L,Yun Shan,Yanzi Wu,Xiaoge Wu,J L Zhang,Xiaobin Zhu,Haiwei Ji,Chunyan Qu,Fang Hou,L Z Liu
摘要
Biological probes with integrated photoluminescence and magnetism characteristics play a critical role in modern clinical diagnosis and surgical protocols combining fluorescence optical imaging (FOI) with magnetic resonance imaging (MRI) technology. However, traditional magnetic semiconductors can easily generate a spin splitting at the Fermi level and half-metallic electronic occupation, which will sharply reduce the radiation recombination efficiency of photogenerated carriers. To overcome this intrinsic contradiction, we propose a controllable oxidation strategy to introduce some particular PO bonds into black phosphorus nanosheets, in which the p orbital hybridization between P and O atoms not only provides some carrier recombination centers but also leads to a room-temperature spin polarization. As a result, the coexistence of photoluminescence and magnetism is realized in multifunctional black phosphorus probes with excellent biocompatibility. This work provides a new insight into integrating photoluminescence and magnetism together by intriguing atomic orbital hybridization.
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