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Time resolved growth of membrane stabilized silver NPs and their catalytic activity

机译:膜稳定的银纳米颗粒的时间分辨生长及其催化活性

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摘要

Formation of highly stable metal nanostructures in a Nafion(R) membrane with various aspect ratios has been of considerable research interest in recent years. However, there is a need for a proper understanding of the growth mechanism of such nanostructures in Nafion(R) (sometimes larger than the size of water-sulfonate ionic clusters of the membrane). In this work, the early growth kinetics of silver nanoparticles (NPs) in Nafion(R)-117 ion-exchange membrane during in situ L-ascorbic acid reduction of Ag+ ions by time resolved in situ small-angle X-ray scattering (SAXS) using synchrotron radiation with a time resolution of 50 ms are revealed for the first time. The SAXS analyses, corroborated by transmission electron microscopy, showed that the sizes of NPs increase rapidly together with their number density until they attain a certain size that could be accommodated in the similar to 5 nm water-sulfonate ionic clusters. Further growth takes place either by self-agglomeration of the particles ejected out from the water-sulfonic acid clusters or by continuous reduction of metal ions on the existing NP surfaces (uniformly or on a specific plane) leading to formation of bigger nanostructures with various aspect ratios. The time resolved information of NP growth provides an opportunity for the controlled synthesis of metal NPs with a definite size, shape and size distribution for a specific application. The catalytic properties of Ag NPs formed in the membrane were examined using borohydride reduction of a model dye methylene blue. It was observed that smaller Ag NPs with a mean diameter similar to 3 nm, confined in the hydrophilic clusters of the Nafion(R) matrix, have reasonably good catalytic activity and a lower lag time for the onset of reduction.
机译:近年来,在具有各种纵横比的Nafion膜中形成高度稳定的金属纳米结构已经引起了相当大的研究兴趣。然而,需要适当理解Nafion中这种纳米结构的生长机理(有时大于膜的水磺酸盐离子簇的大小)。在这项工作中,Nafion®-117离子交换膜中银纳米颗粒(NPs)在原位L-抗坏血酸通过时间还原Ag +离子过程中的早期生长动力学解决了原位小角度X射线散射(SAXS) )首次揭示了使用50 ms时间分辨率的同步加速器辐射。通过透射电子显微镜证实的SAXS分析表明,NPs的尺寸及其数量密度迅速增加,直到达到一定的尺寸,可以容纳在类似于5 nm的水磺酸盐离子簇中。通过从水磺酸簇中喷出的颗粒的自团聚或通过连续还原现有NP表面(均匀或在特定平面上)的金属离子,从而形成更大的纳米结构,从而实现进一步的生长比率。 NP生长的时间分辨信息为特定用途的具有确定的尺寸,形状和尺寸分布的金属NP的受控合成提供了机会。使用硼氢化物还原的模型染料亚甲基蓝检查了在膜中形成的Ag NP的催化性能。观察到,平均直径相似于3 nm的较小的Ag NPs被限制在Nafion基质的亲水簇中,具有相当好的催化活性和较短的还原开始延迟时间。

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