Department of Chemistry, Tongji University, Siping Road 1239, Shanghai 200092, PR China.
Chemphyschem. 2011 Dec 23;12(18):3573-7. doi: 10.1002/cphc.201100429. Epub 2011 Oct 11.
Newly designed magnetic FeNi-Pt match-like heterostructured nanorods were synthesized by means of induced growth of FeNi nanorods on Pt nanotips. The proposed synthesis mechanism is corroborated by SEM, TEM, XRD and XPS. The magnetic behavior shows that the magnetic saturation and coercivity are strongly dependent on both the shape and the alloy composition. The saturation magnetizations (Ms) and the coercivity (Hc) of nanorods synthesized are larger than those of nanoparticles because of the relatively large anisotropy of nanorods. Maximum saturation magnetization is obtained for Fe(82) Ni(15) -Pt(3) at 226.6 emu g(-1), whereas maximum coercivity is obtained for Fe(20)Ni(77)-Pt(3) at 136.8 Oe. Shape-dependent reactivity toward the reduction of chlorinated solvents was observed for the FeNi-Pt heterostructured nanomaterials. In particular, the Fe(82)Ni(15)-Pt(3) nanorods are highly reactive in the dechlorination process of 1,1,2,2-tetrachloroethane.
新型设计的磁性 FeNi-Pt 匹配样异质结构纳米棒通过在 Pt 纳米尖端上诱导生长 FeNi 纳米棒来合成。所提出的合成机制得到了 SEM、TEM、XRD 和 XPS 的证实。磁性能表明,磁饱和和矫顽力强烈依赖于形状和合金组成。由于纳米棒具有较大的各向异性,因此合成纳米棒的饱和磁化强度(Ms)和矫顽力(Hc)大于纳米颗粒。Fe(82)Ni(15)-Pt(3) 的最大饱和磁化强度为 226.6 emu g(-1),而 Fe(20)Ni(77)-Pt(3) 的最大矫顽力为 136.8 Oe。观察到 FeNi-Pt 异质结构纳米材料对氯化溶剂还原的形状依赖性反应。特别是,Fe(82)Ni(15)-Pt(3) 纳米棒在 1,1,2,2-四氯乙烷的脱氯过程中具有很高的反应活性。