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Biosynthesis of Inorganic Nanoparticles: A Fresh Look at the Control of Shape, Size and Composition

机译:无机纳米粒子的生物合成:形状,大小和组成控制的全新视角

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Several methodologies have been devised for the design of nanomaterials. The “Holy Grail” for materials scientists is the cost-effective, eco-friendly synthesis of nanomaterials with controlled sizes, shapes and compositions, as these features confer to the as-produced nanocrystals unique properties making them appropriate candidates for valuable bio-applications. The present review summarizes published data regarding the production of nanomaterials with special features via sustainable methodologies based on the utilization of natural bioresources. The richness of the latter, the diversity of the routes adopted and the tuned experimental parameters have led to the fabrication of nanomaterials belonging to different chemical families with appropriate compositions and displaying interesting sizes and shapes. It is expected that these outstanding findings will encourage researchers and attract newcomers to continue and extend the exploration of possibilities offered by nature and the design of innovative and safer methodologies towards the synthesis of unique nanomaterials, possessing desired features and exhibiting valuable properties that can be exploited in a profusion of fields.
机译:已经设计出几种用于纳米材料设计的方法。材料科学家的“圣杯”是具有成本效益,生态友好的纳米材料的合成,具有受控的尺寸,形状和组成,因为这些特征赋予了所生产的纳米晶体独特的性能,使其成为有价值的生物应用的合适之选。本综述总结了有关利用天然生物资源利用可持续方法通过特殊方法生产具有特殊功能的纳米材料的公开数据。后者的丰富性,采用的途径的多样性以及经过调整的实验参数已导致制造出具有不同化学家族的纳米材料,这些纳米材料具有适当的成分并显示出有趣的尺寸和形状。预计这些杰出的发现将鼓励研究人员并吸引新来者继续并继续探索自然界提供的可能性以及设计新颖安全的方法,以合成独特的纳米材料,具有所需的特征并展现出可利用的宝贵性能。在众多的领域。

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