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Synthesis of Sn(1-x)Fex@FeySn(1-y)Oz nanohybrids via a simple programmed microfluidic process

机译:通过简单的程序化微流体过程合成Sn(1-x)Fex @ FeySn(1-y)Oz纳米杂化物

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摘要

Core-shell Sn(1-x)Fex@FeySn(1-y)Oz nanohybrids are synthesized via a simple programmed microfluidic process. Characterization by high resolution transmission electron microscopy, energy dispersion X-ray spectroscopy and X-ray diffraction indicates that their sizes, shapes, compositions and crystal structures can be conveniently tuned by reaction temperatures. Different from the orientated growth to rod shaped Sn(1-x)Fex@FeySn(1-y)Oz nanorods (x 0.1, y < 0.5) with tin-rich crystalline cores and amorphous shells mixing with tiny Fe@FeOx nanoparticles at a low reaction temperature (e.g., 30 degrees C), the Sn(1-x)Fex@FeySn(1-y)Oz nanospheres (x < 0.5, 0.5 < y < 1) with crystalline tin-rich FeSn alloy cores and surface oxidized tin ferrite shells can be formed at an elevated reaction temperature (e.g., 90 degrees C). A blue-shift was found in the photoluminescence spectrum due to the existence of Fe in Sn(1-x)Fex@FeySn(1-y)Oz nanospheres compared with those Sn@SnO2 nanohybrids. The superparamagnetic property observed in the nanospheres can be attributed to the SnFe alloy cores and amorphous tin ferrite shells. As to the portion of Fe doping of Sn@SnO2 nanorods mixed with Fe@FeOx nanoparticles formed at 30 degrees C, they exhibit paramagnetic properties with increased saturated magnetic fields.
机译:核-壳Sn(1-x)Fex @ FeySn(1-y)Oz纳米杂化物是通过简单的程序化微流体过程合成的。通过高分辨率透射电子显微镜,能量色散X射线光谱法和X射线衍射的表征表明,它们的尺寸,形状,组成和晶体结构可通过反应温度方便地调节。与定向生长为棒状Sn(1-x)Fex @ FeySn(1-y)Oz纳米棒(x 0.1,y <0.5)的过程不同,该纳米棒具有富含锡的结晶核和无定形壳,并与微小的Fe @ FeOx纳米颗粒混合在低反应温度(例如30摄氏度)下,Sn(1-x)Fex @ FeySn(1-y)Oz纳米球(x <0.5,0.5

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