Synthesis of Bionanomaterials for Biomedical Applications summarizes a range of procedures, including green synthesis of metal nanoparticles, metal oxide nanoparticles, and other types of nanoparticles while also exploring the appropriate use of these nanoparticles in various therapeutic applications such as anticancer, antibacterial, antifungal, drug delivery, and more. The book provides important information for materials scientists and pharmaceutical scientists on the synthesis of various nanoparticles using a variety of eco-friendly bionanomaterials. As concern has arisen regarding the environmental impact caused by some of nanomaterials, as well as their possible toxicity to cells, this book presents information on a new generation of eco-friendly materials.
In addition, the green synthesis of nanoparticles shows how environmentally-friendly nanoparticles can be synthesized from different biological sources, such as microbes, fungi, algae and plants.
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Dr. Munir Ozturk (Ph.D) holds Ph.D. and D.Sc. degrees from the Ege University, Turkiye. He is currently acting as the “Vice President of the Islamic World Academy of Sciences”and is also Fellow of the Islamic World Academy of Science. Dr. Ozturk has been honored as the “Foreign Fellow Pakistan Academy of Science”. He has served at the Ege University-Turkiye for more than 50 years in different positions, has been Founder Director of the Centre for Environmental Studies, Ege University, and Chairman of the Botany Department and Director of the Botanical Garden. Sideritis ozturkii and Verbascum ozturkii are 2 newly recorded endemic plant species from Turkiye in his name. His fields of scientific interest are; pollution & biomonitoring; biosaline agriculture; plant ecophysiology, medicinal and aromatic plants conservation. Dr. Ozturk has published almost 60 books with internationally known publishers including Springer, Elsevier,Taylor & Francis, Wiley and few others. His biodata shows more than 90 book chapters and 200 papers in international journals; 120 with impact factor. He has also presented 125 papers at the International Meetings and 85 at the National Meetings. Dr. Munir has served as a guest editor for more than 13 journals; holds more than 20 Memberships of “Institutions and Professional Bodies”; has been recognized by more than 12 “National and International Bodies”; has received fellowships from the globally recognized Alexander von Humboldt Foundation, Japanese Society for Promotion of Science, and the National Science Foundation of the USA. He has also worked as consultant fellow at the Faculty of Forestry, Universiti Putra Malaysia, Malaysia; and as Distinguished Visiting Scientist at International Centre for Chemical and Biological Sciences, ICCBS-TWAS, Karachi University, Pakistan.
Dr. Arpita Roy (Ph.D) is working as an Assistant Professor in Sharda University, Greater Noida, India. Her specialization is in plant biotechnology, nanobiotechnology, environmental biotechnology and microbiology. She has been teaching graduate and post graduate students of biotechnology. She has taught topics related to plant biotechnology, microbiology, bioprocess engineering and solid waste management. She has authored more than 50 scientific articles and 18 book chapters from international publishers and edited 2 books. She has presented and participated in numerous state, national and international conferences, seminars, workshops and symposium. She has received the Commendable Research Award for excellence in research during the year 2019 and 2020- DTU. She has served as editorial board member and reviewer of reputed international journals.
Dr. Rouf Ahmad Bhat pursued his doctorate at Sher-e-Kashmir University of Agricultural Sciences and Technology Kashmir (Division of Environmental Sciences) and is presently working in the Department of School Education, Government of Jammu and Kashmir. Dr. Bhat has been teaching for the past 09 years and is an author of more than 55 research articles (h-index 32; i-index 52; total citation 4000) and 50 chapters and has published more than 50 books with international publishers. Besides, he has worked as an associate environmental expert in World Bank-funded Flood Recovery Project and the environmental support staff in the Asian Development Bank (ADB) funded development projects.
Concern has arisen regarding the environmental impact caused by some nanomaterials, as well as their possible toxicity to cells. A new generation of eco-friendly nanomaterials has been developed in response to these concerns. Green synthesis of nanoparticles is revealing how environmentally friendly nanoparticles can be synthesized from different biological sources, such as microbes, fungi, algae, and plants. Nanoparticle synthesis, using biological sources, is characterized by processes that take place at near-ambient temperature and under neutral pH; avoiding toxic waste generation and the use of harmful reagents.
Synthesis of Bionanomaterials for Biomedical Applications summarizes a range of procedures, including green synthesis of metal nanoparticles, metal oxide nanoparticles, and other types of nanoparticles, and explores the appropriate use of these nanoparticles in various therapeutic applications, such as anticancer, antibacterial, antifungal, drug delivery, etc. This book will provide important information for materials scientists and pharmaceutical scientists on the synthesis of various nanoparticles, using a variety of eco-friendly bionanomaterials.
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Taschenbuch. Zustand: Neu. Neuware - Synthesis of Bionanomaterials for Biomedical Applications summarizes a range of procedures, including green synthesis of metal nanoparticles, metal oxide nanoparticles, and other types of nanoparticles while also exploring the appropriate use of these nanoparticles in various therapeutic applications such as anticancer, antibacterial, antifungal, drug delivery, and more. The book provides important information for materials scientists and pharmaceutical scientists on the synthesis of various nanoparticles using a variety of eco-friendly bionanomaterials. As concern has arisen regarding the environmental impact caused by some of nanomaterials, as well as their possible toxicity to cells, this book presents information on a new generation of eco-friendly materials. In addition, the green synthesis of nanoparticles shows how environmentally-friendly nanoparticles can be synthesized from different biological sources, such as microbes, fungi, algae and plants. Artikel-Nr. 9780323911955
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