Metallic, magnetic and carbon-based nanomaterials : synthesis and biomedical applications / Ajit Khosla, Irshad A. Wani, Mohammad N. Lone.

By: Khosla, Ajit [author.]
Contributor(s): Wani, Irshad Ahmad, 1983- [author.] | Lone, Mohammad N [author.]
Language: English Series: Electrochemical Society series: Publisher: Hoboken, New Jersey : John Wiley & Sons, Inc., [2025]Description: 1 online resourceContent type: text Media type: computer Carrier type: online resourceISBN: 9781119870654; 9781119870685; 1119870682; 9781119870661; 1119870666; 9781119870678; 1119870674Subject(s): Nanostructured materials | Nanostructured materials -- Magnetic properties | Metal nanoparticles | Biomedical engineeringGenre/Form: Electronic books.Additional physical formats: Print version:: Metallic, magnetic and carbon-based nanomaterials.DDC classification: 620.1/15 LOC classification: TA418.9.N35 | K55 2025Online resources: Full text is available at Wiley Online Library. Click here to view. Summary: "Nanotechnology, at the intersection of physics, chemistry, biology, and engineering, revolutionizes our approach to manipulating matter at the atomic and molecular levels. Through the creation of metallic, magnetic, and carbon-based nanomaterials, scientists unlock unprecedented opportunities for innovation across diverse fields, particularly in biomedicine. These tiny structures boast unique properties, paving the way for groundbreaking advancements in drug delivery, imaging, diagnostics, and therapeutic interventions. Various classes of nanoparticles, including gold and silver, magnetic ferrites, quantum dots, carbon nanotubes, and silica-based/polymeric nanoparticles, have multifaceted biomedical applications. They are used for bioimaging (CT, MRI), biosensing, drug delivery (targeted and controlled), photothermal therapy, cell tracking, tissue engineering, and vaccine adjuvants. These nanoparticles offer precise visualization, enhanced drug delivery, and therapeutic efficacy, revolutionizing diagnostics, therapy, and personalized medicine. The power of nanotechnology is harnessed as a journey toward personalized medicine and transformative healthcare solutions is embarked upon, ushering in a new era of precision and efficacy in medical treatment."-- Provided by publisher.
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Includes bibliographical references and index.

"Nanotechnology, at the intersection of physics, chemistry, biology, and engineering, revolutionizes our approach to manipulating matter at the atomic and molecular levels. Through the creation of metallic, magnetic, and carbon-based nanomaterials, scientists unlock unprecedented opportunities for innovation across diverse fields, particularly in biomedicine. These tiny structures boast unique properties, paving the way for groundbreaking advancements in drug delivery, imaging, diagnostics, and therapeutic interventions. Various classes of nanoparticles, including gold and silver, magnetic ferrites, quantum dots, carbon nanotubes, and silica-based/polymeric nanoparticles, have multifaceted biomedical applications. They are used for bioimaging (CT, MRI), biosensing, drug delivery (targeted and controlled), photothermal therapy, cell tracking, tissue engineering, and vaccine adjuvants. These nanoparticles offer precise visualization, enhanced drug delivery, and therapeutic efficacy, revolutionizing diagnostics, therapy, and personalized medicine. The power of nanotechnology is harnessed as a journey toward personalized medicine and transformative healthcare solutions is embarked upon, ushering in a new era of precision and efficacy in medical treatment."-- Provided by publisher.

Description based on online resource; title from digital title page (viewed on December 09, 2024).

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