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Iodine Ions Mediated Formation of Monomorphic Single-Crystalline Platinum Nanoflowers

机译:Iodine Ions mediated Formation of monomorphic single-Crystalline platinum Nanoflowers

摘要

Well-defined and strikingly monomorphic single-crystalline Pt nanoflowers were successfully synthesized through the addition of a large amount of iodine ions into polyol process (5 mM H2PtCl6, 30 mM KI, and 50 mM PVP in ethylene glycol solution at 160 degrees C). The detailed structures of the Pt nanoflowers were studied with high-resolution TEM, indicating that high-quality production of the Pt nanoflowers could be obtained when the KI concentration was increased to six times of H2PtCl6. The size of Pt nanoflowers could be tuned by changing the concentration of H2PtCl6 with the constant Pt/I ratio (1:6). The formation process of the nanoflowers was investigated by the UV-vis and EXAFS spectroscopic studies, demonstrating that the iodine ions played a key role in inducing the formation of the single-crystalline Pt nanoflowers. After the addition of iodine ions into the polyol synthesis, the Pt-I complex was formed and reduced by different kinetics compared with that of H2PtCl6 to induce the overgrowth of Pt nanocrystals. Additionally, a small portion of iodine element was found to be strongly adsorbed on the surfaces of Pt nanoflowers, which probably also favored the anisotropic overgrowth of Pt nanocrystals resulting in the single-crystalline Pt nanoflowers. A comprehensive set of systematic studies on the synthesis factors (the concentrations of Pt precursor, iodine ions and PVP, reaction temperature, different kinds of Pt precursors and reaction atmosphere) was also reported.
机译:通过在多元醇工艺中加入大量碘离子(在160℃的乙二醇溶液中加入5 mM H2PtCl6、30 mM KI和50 mM PVP),成功地合成了定义明确且引人注目的单晶Pt纳米花。用高分辨率的TEM研究了Pt纳米花的详细结构,表明当KI浓度增加到H2PtCl6的六倍时,可以高质量生产Pt纳米花。可以通过以恒定的Pt / I比(1:6)改变H2PtCl6的浓度来调节Pt纳米花的大小。通过紫外可见和EXAFS光谱研究了纳米花的形成过程,表明碘离子在诱导单晶Pt纳米花的形成中起关键作用。在将碘离子添加到多元醇合成中后,与H2PtCl6相比,形成了Pt-I络合物并通过不同的动力学使其还原,从而诱导了Pt纳米晶体的过度生长。另外,发现一小部分碘元素强烈吸附在Pt纳米花的表面上,这可能也有利于Pt纳米晶体的各向异性过度生长,从而导致单晶Pt纳米花。还报道了对合成因素(Pt前体的浓度,碘离子和PVP的浓度,反应温度,不同类型的Pt前体和反应气氛)进行的全面的系统研究。

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