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Trioctylphosphine-assisted morphology control of ZnO nanoparticles

机译:ZnO纳米粒子的三辛基膦辅助形态控制

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摘要

This study investigates the morphological change in colloidal ZnO nanoparticles (NPs) synthesized with trioctylphosphine (TOP). The addition of TOP to the synthesis causes an evolution in the shape of ZnO NPs to tadpole-like particles from quasi-spherical particles at 300 degrees C. The total length of the tadpole-like ZnO NPs can be modified by controlling the molar ratio of TOP to oleylamine (OLAM). The tadpole-like particles are elongated as the concentration of TOP increased but decreased when the addition of TOP is excessive. These tadpole-like ZnO NPs transform to quasi-spherical NPs regardless of the amount of TOP at a reaction time of 3 h at 300 degrees C. At 200 degrees C, the effect of TOP on the ZnO NP synthesis differs from that at 300 degrees C. The ZnO NPs synthesized by controlling the molar ratios of surfactant ligands (TOP:OLAM = 2:100 and 70: 100) at 200 degrees C share similar amorphous structures, while a crystalline ZnO phase is formed when the reaction time is 3 h. X-ray photoelectron spectroscopy analysis shows that TOP influences the oxidation of ZnO and suggests that a combination of OLAM and TOP plays a role in controlling the shape of ZnO NPs. These results provide critical insights to the utilization of TOP for a shape controlling ligand in ZnO NPs and suggest a new route to design oxide NPs.
机译:本研究研究了用三辛基膦(顶部)合成的胶体ZnO纳米颗粒(NPS)的形态变化。将顶部添加到合成中引起ZnO NPS形状的蒸馏给蝌蚪状颗粒在300摄氏度下的准球形颗粒。通过控制摩尔比可以改变蝌蚪状ZnO NP的总长度顶部到oleylamine(olam)。蝌蚪状颗粒伸长,因为当加入顶部时,瓶盖的浓度增加但减少了过量。这些蝌蚪样ZnO NPS转化为准球形NPS,无论在300℃的300℃的反应时间为3小时的底部的量,顶部对ZnO NP合成的效果不同于300度C.通过在200摄氏度下控制表面活性剂配体的摩尔比(顶部:olam = 2:100和70:100)合成的ZnO NPs共享类似的无定形结构,而当反应时间为3小时时形成结晶ZnO相。 X射线光电子能谱分析显示,顶部影响ZnO的氧化并表明奥拉姆和顶部的组合在控制ZnO NP的形状方面起作用。这些结果为ZnO NPS中的形状控制配体的利用提供了关键洞察,并建议了一种用于设计氧化NP的新途径。

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