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关于(Cu2(+)/Cu1(2+))(0.044)Zn(0.956)O 电纺纳米带中光致发光猝灭及相关亚铁磁性的 Cu(2+)离子 - F 中心复合物观点

A Cu(2+) ion-F center complex view on the photoluminescence quenching and correlating ferrimagnetism in (Cu2(+)/Cu1(2+))(0.044)Zn(0.956)O electrospun nanobelts.

作者信息

Li Jian-Min, Zeng Xian-Lin, Wei Dan-Ping, Hu Yun-Bing, Xu Zhu-An

机构信息

Department of Physics and ‡State Key Laboratory of Silicon Materials, Zhejiang University , Hangzhou 310027, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2014 Mar 26;6(6):4490-7. doi: 10.1021/am5001135. Epub 2014 Mar 17.

Abstract

Unlike to the most previous reports, mixed-cation Cu(+)/Cu(2+) doping-induced novel nanoscale phenomena, including photoluminescence quenching and a correlating ferrimagnetism with Néel temperature ≈ 14 K, were found in the as-calcined (Cu2(+)/Cu1(2+))0.044Zn0.956O electrospun nanobelts (NBs). There is also high strain (up to 1.98%) and shrunk lattice distortion (ΔV/V0 ∼ 0.127%) in the (Cu2(+)/Cu1(2+))0.044Zn0.956O NBs, leading to broken lattice symmetry in conjunction with nonstoichiometry (i.e., oxygen vacancies or accurate F centers), which could be possible origins of ferrimagnetism in the Cu-doped ZnO NBs. Electron paramagnetic resonance spectra reveal that there are giant and anisotropic g factors, suggesting that there is strong anisotropic spin-orbit interaction between the Cu(2+) ion and F center (i.e., forming Cu(2+)-F(+) complexes) in the (Cu2(+)/Cu1(2+))0.044Zn0.956O NBs. The above correlation enables the potential application of tuning of the optical and ferrimagnetic properties through strain and F-center engineering.

摘要

与之前的大多数报道不同,在煅烧后的(Cu2(+)/Cu1(2+))0.044Zn0.956O电纺纳米带(NBs)中发现了混合阳离子Cu(+)/Cu(2+)掺杂诱导的新型纳米尺度现象,包括光致发光猝灭以及与奈尔温度≈14 K相关的亚铁磁性。在(Cu2(+)/Cu1(2+))0.044Zn0.956O纳米带中还存在高应变(高达1.98%)和收缩的晶格畸变(ΔV/V0 ∼ 0.127%),导致晶格对称性破坏并伴有非化学计量比(即氧空位或精确的F中心),这可能是Cu掺杂ZnO纳米带中亚铁磁性的起源。电子顺磁共振光谱表明存在巨大且各向异性的g因子,这表明在(Cu2(+)/Cu1(2+))0.044Zn0.956O纳米带中Cu(2+)离子与F中心之间存在强各向异性自旋 - 轨道相互作用(即形成Cu(2+)-F(+)络合物)。上述相关性使得通过应变和F中心工程调节光学和亚铁磁性特性具有潜在应用价值。

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