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Structure-controlled Nanomaterial Synthesis using Surfactant-assisted Ball Milling - A Review

机译:表面活性剂辅助球磨合成结构可控的纳米材料-综述

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摘要

The applications of nanoparticles have been tremendously increased in the field of targeted drug release, gene silencing, therapeutics, industrial and environmental catalysis, water purification and optoelectronics. These are because of their versatile sizes and shapes, large specific surface area with convenient surface properties, high chemical reactivity, physical affinity and optical, electrical and magnetic properties. However, the synthesis of nanoparticles with controlled nano/microstructures and desired surface properties has been remaining a challenging task. Various approaches have been proposed for the commercial production of nanostructured particles from solid bulk materials. Chemical methods for the synthesis of controlled structure nanoparticles from rare-earth solid compounds have showed limited success in terms of yield, purity and cost. Recently, surfactant assisted high energy ball milling has been exploited for the synthesis of various nanomaterials, nanograins and nanocomposites from solid state. Self-assembled structures of surfactants act as cationic, anionic or charge neutral lubricants to control the nano/microenviroment of the nanostructured materials, producing nanoparticles with improved dispersion. In high-energy ball milling, plastic deformation, cold-welding and fracture pre-dominantly contribute to bring a change in size, shape and nano/microenvironment of nanoparticles. In this review, we have systematically presented the basic concept and applications of surfactant assisted mechanical milling for the synthesis of various nanomaterial, nanocomposite and nanoparticles.
机译:在靶向药物释放,基因沉默,治疗,工业和环境催化,水净化和光电子学领域,纳米粒子的应用已大大增加。这些是因为它们具有通用的尺寸和形状,比表面积大,具有便利的表面特性,高化学反应性,物理亲和力以及光学,电和磁特性。然而,具有受控的纳米/微结构和所需表面性质的纳米颗粒的合成仍然是一项艰巨的任务。已经提出了各种方法来从固体散装材料商业生产纳米结构颗粒。从稀土固体化合物合成可控结构纳米颗粒的化学方法在产率,纯度和成本方面显示出有限的成功。最近,表面活性剂辅助的高能球磨已被用于从固态合成各种纳米材料,纳米颗粒和纳米复合材料。表面活性剂的自组装结构充当阳离子,阴离子或电荷中性润滑剂,以控制纳米结构材料的纳米/微环境,从而产生具有改善分散性的纳米颗粒。在高能球磨中,塑性变形,冷焊和断裂主要导致纳米粒子的尺寸,形状和纳米/微环境发生变化。在这篇综述中,我们系统地介绍了表面活性剂辅助机械研磨用于合成各种纳米材料,纳米复合材料和纳米颗粒的基本概念和应用。

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