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Sergey Sokovnin,Vladislav Ilves

Nanopowders of Metal Oxides and Fluorides: Preparation, Properties, and Applications

Nanopowders of Metal Oxides and Fluorides: Preparation, Properties, and Applications

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  • More about Nanopowders of Metal Oxides and Fluorides: Preparation, Properties, and Applications

A new method for producing simple and complex metal oxide and fluoride nanopowders using pulsed electron beam evaporation (PEBE) is presented. The method has been studied for over 10 years and is useful for researchers in nanotechnology, physical chemistry, biomedicine, and pharmaceuticals, especially those interested in drug delivery or cancer therapy.

Format: Hardback
Length: 696 pages
Publication date: 27 December 2022
Publisher: Jenny Stanford Publishing


Here is the rephrased text:

A novel approach for the synthesis of both simple and intricate metal oxide and fluoride nanopowders is presented. This method employs the evaporation-condensation process utilizing pulsed electron beam evaporation (PEBE). The outcomes of extensive research spanning over a decade are presented, shedding light on the unique properties of nanopowders generated through this method. This research holds significant value for scholars in nanotechnology, physical chemistry, biomedicine, and pharmaceuticals, particularly those with a keen interest in drug delivery or cancer therapy.

The utilization of PEBE in the synthesis of nanopowders offers several advantages. Firstly, it enables the precise control of particle size, shape, and composition, allowing for the tailoring of materials to meet specific requirements. Additionally, the process is highly efficient, producing large quantities of nanopowders in a short period. Moreover, PEBE offers the potential for the synthesis of a wide range of materials, including metals, oxides, and fluorides, expanding the scope of nanoparticle applications.

In the context of drug delivery, nanopowders have shown promising results in improving the efficacy of therapeutic agents. By encapsulating drugs in nanoparticle carriers, the release of the active substance can be controlled, leading to enhanced drug targeting and reduced side effects. For instance, nanopowders can be used to deliver drugs directly to cancer cells, minimizing drug exposure to healthy tissues and improving treatment outcomes.

Similarly, in cancer therapy, nanopowders have been explored as potential agents for targeted drug delivery. By conjugating nanopowders with specific targeting molecules, such as antibodies or peptides, it is possible to deliver drugs specifically to cancer cells, minimizing drug exposure to healthy tissues and enhancing the therapeutic response. This approach has the potential to improve the treatment of cancer and reduce the side effects associated with conventional chemotherapy.

In conclusion, the synthesis of metal oxide and fluoride nanopowders using the evaporation-condensation process utilizing pulsed electron beam evaporation (PEBE) presents a promising approach for the development of new materials with enhanced properties. The precise control of particle size, shape, and composition, along with the high efficiency and versatility of the process, make PEBE an invaluable tool in nanotechnology, physical chemistry, biomedicine, and pharmaceuticals. The potential applications of nanopowders in drug delivery and cancer therapy are vast, and further research is expected to expand the horizons of this field.

Weight: 1480g
Dimension: 229 x 152 (mm)
ISBN-13: 9789814968386

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