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- W2788248721 abstract "Nanotechnology is an advanced and emerging field in nanoparticle synthesis. Green synthesis of nanoparticles is a biocompatible, eco-friendly, and efficient way to deal with human problems. Human health is most vulnerable for these problems. Herbal drugs and medicines are recognized from ancient ages for their pharmaceutical properties. Due to their pharmaceutical nature, plant-derived material can be used to produce nanoparticles that can be helpful in biomedical fields. Reproducibility and scale up of desired structures of nanoparticles is a hot issue in nanoparticle synthesis. The chapter will be dealing with (1) the optimized techniques and tools to produce desired nanostructures, (2) the ways to increase the reproducibility, stability and scale up of targeted result, (3) factors affecting the morphology and chemistry of nanoparticles and variation in pharmaceutical properties due to change in nanostructures, and (4) the issues regarding risks in the production of nanoparticles and their toxicity and predictability. The innovative techniques can be a helpful tool to deal with biomedical and pharmaceutical problems. The objective is to devise an optimized method, conditions, and layout to produce targeted nanoparticles of desired chemistry and morphology by using plant-derived compounds. The chapter will help to predict how variation in morphology and chemistry alter pharmaceutical properties, and how to stabilize the structure to get desirable pharmaceutical products. The strategy will increase the reproducibility and predictability. It will be dealing with the risks in the synthesis of nanoparticles, which is still understudied and needs further investigation." @default.
- W2788248721 created "2018-03-06" @default.
- W2788248721 creator A5016204607 @default.
- W2788248721 creator A5090155995 @default.
- W2788248721 date "2018-01-01" @default.
- W2788248721 modified "2023-09-24" @default.
- W2788248721 title "Tools and techniques for the optimized synthesis, reproducibility and scale up of desired nanoparticles from plant derived material and their role in pharmaceutical properties" @default.
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