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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Ionic Liquid Anion Controlled Nanoscale Gold Morphology Grown at a Liquid Interface
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Ionic Liquid Anion Controlled Nanoscale Gold Morphology Grown at a Liquid Interface

机译:在液体界面种植的离子液体阴离子控制纳米级金形态

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摘要

Two different ionic liquids comprising the tetrabutylphosphonium cation ([P-4444]) paired with the strongly coordinating anions 6-aminocaproate ([6-AC]) or taurinate ([tau]) were prepared and employed in an aqueous/organic liquid bilayer system to generate nanoscale gold by Au(OH)(4)(-) photoreduction. Generally, as the concentration of ionic liquid in the organic phase was increased, the resulting quasi-spherical gold nanoparticles were smaller in size and presented less aggregation, leading to marked increases in the catalytic efficiency for 4-nitrophenol reduction using borohydride. The diffusion of the ionic liquids across the liquid/liquid interface was also investigated, revealing partition coefficients of 6.0 and 7.6 for [P-4444][6-AC] and [P-4444] [tau], respectively. Control studies elucidated" that biphasic interfacial reduction was 'necessary to achieve stable nanoparticles possessing high catalytic activity. When the ionic liquid anion was instead replaced by the weakly coordinating bis(trifluoromethylsulfonyl)imide ([Tf2N]), photoreduction of Au(OH)(4)(-) led to holey, wavy gold nanowires instead of spherical nanoparticles, indicating the dramatic morphological control exerted by the coordination strength of the ionic liquid anion. This strategy is straightforward and simple and opens up a number of intriguing avenues for controllably preparing plasmonic colloids for a range of applications from catalysis to optical sensing.
机译:包含与强邻氨基己二酸乙酯6-氨基己酸酯([6-AC])或牛磺酸盐(τ)配对的两种不同的离子液体,并在水/有机液体双层系统中使用通过Au(OH)(4)( - )拍摄产生纳米级金。通常,随着有机相中的离子液体的浓度增加,所得的准 - 球形金纳米颗粒的尺寸较小并呈现较少的聚集,导致使用硼氢化硼的4-硝基苯酚还原的催化效率显着增加。还研究了离子液体过滤在液体/液体界面上的扩散,揭示了6.0和7.6的分配系数,分别用于[P-4444] [6-AC]和[P-4444] [TAU]。对照研究阐明了“具有高催化活性的稳定纳米颗粒所必需的”双相界面减少“。当离子液体阴离子被弱协调双(三氟甲基磺酰基)酰亚胺([TF2N])取代时,Au(OH)的光敏( 4)( - )导致Holdy,波浪金纳米线代替球形纳米颗粒,表明通过离子液体阴离子的配位强度施加的显着的形态控制。该策略是简单简便的,并开辟了许多用于可控准备的兴趣途径从催化到光学感测的一系列应用的等离子体胶体。

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