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Green Synthesis of Silver Nanoparticles by Low-Energy Wet Bead Milling of Metal Spheres

机译:金属球的低能湿珠研磨绿色合成银纳米颗粒

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摘要

A low-energy, magnetically-driven milling technique for the synthesis of silver nanoparticles is proposed, where the grinding medium and the metal precursor consisting of silver spheres have the same shape and size, belonging to a millimetric scale. The process is carried out at room temperature in aqueous solvent, where different types of capping agents have been dissolved to damp particle agglomeration. The particle diameters, determined by dynamic light scattering and transmission electron microscopy, have been compared with those typical of conventional wet-chemical bottom-up synthesis processes. The use of milling spheres and metal precursor of the same initial shape and size allows to overcome some drawbacks and limitations distinctive of conventional bead-milling equipment, generally requiring complex operations of separation and recovery of milling media. The milling beadanoparticle diameter ratio obtained by this approach is higher than that typical of most previous wet bead milling techniques. The method described here represents a simple, one-pot, cost-effective, and eco-friendly process for the synthesis of metal nanoparticles starting from a bulky solid.
机译:提出了一种用于合成银纳米颗粒的低能磁力驱动的研磨技术,其中研磨介质和由银球组成的金属前体具有相同的形状和大小,属于毫米级。该方法在室温下于水性溶剂中进行,其中已溶解了不同类型的封端剂以抑制颗粒团聚。通过动态光散射和透射电子显微镜确定的粒径已与常规湿化学自下而上合成工艺的典型粒径进行了比较。使用具有相同初始形状和尺寸的研磨球和金属前体可以克服常规珠磨设备所特有的一些缺点和局限,通常需要复杂的分离和回收研磨介质的操作。通过这种方法获得的研磨珠/纳米颗粒直径比高于大多数现有的湿珠研磨技术的典型直径比。这里描述的方法代表了一种简单,一锅,经济高效且环保的方法,用于从庞大的固体开始合成金属纳米颗粒。

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