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Silver nanoparticles : = properties,...
~
Malik, M.M.,
Silver nanoparticles : = properties, synthesis techniques, characterizations, antibacterial and anticancer studies /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Silver nanoparticles :/ Shweta Rajawat and M.M. Mailk.
Reminder of title:
properties, synthesis techniques, characterizations, antibacterial and anticancer studies /
Author:
Rajawat, Shweta,
other author:
Malik, M.M.,
Description:
1 online resource (184 pages) :illustrations. :
Subject:
Silver. -
Online resource:
http://ebooks.asmedigitalcollection.asme.org/book.aspx?bookid=2374
Silver nanoparticles : = properties, synthesis techniques, characterizations, antibacterial and anticancer studies /
Rajawat, Shweta,
Silver nanoparticles :
properties, synthesis techniques, characterizations, antibacterial and anticancer studies /Shweta Rajawat and M.M. Mailk. - 1 online resource (184 pages) :illustrations.
Includes bibliographical references and index.
Front Matter -- 1. Introduction -- 2. Literature Review -- 3. Materials and Methods of Synthesis -- 4. Results and Discussion -- 5. Conclusion -- Back Matter.
Restricted to subscribers or individual electronic text purchasers.
This monograph introduces historical background of silver and narrates exhaustive literature review conducted during the research. It gives details about the existing physical, chemical and biological approaches. It also mentions innovative green synthesis methods, designed to render pure silver nanoparticles, and their characterization results. The green synthesis methods replace hazardous chemicals by environment friendly products using principles of green chemistry. The monograph includes the study of the effect of the current, temperature, strength of the precursor, reducing/capping agents and their concentration on the morphology of nanoparticles and the nanostructures. The findings of the tests conducted for antibacterial properties show almost 100% killing efficiency against E. coli, S. Aureus, S. Typhi and P. Aeruginosa. In case of in-vitro testing for anti-cancer properties, 80–98% killing efficiency for MC F-7 Breast cancer cell lines and He-La cervical cancer cell lines were noticed. The as-synthesized silver nanoparticles finds wide applications in the field of medicine, especially targeted drug delivery.
Electronic reproduction.
New York, N.Y. :
The American Society of Mechanical Engineers,
2018.
Mode of access: World Wide Web.
System requirements: Adobe Acrobat Reader.
In English.
Standard No.: 10.1115/1.860458 doi
Publisher. No.: 860458asme
ASME, Two Park Avenue. New York, NY 10016Subjects--Topical Terms:
1066274
Silver.
Index Terms--Genre/Form:
554714
Electronic books.
LC Class. No.: TA480.S5
Dewey Class. No.: 620.1/8923
Silver nanoparticles : = properties, synthesis techniques, characterizations, antibacterial and anticancer studies /
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properties, synthesis techniques, characterizations, antibacterial and anticancer studies /
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Front Matter -- 1. Introduction -- 2. Literature Review -- 3. Materials and Methods of Synthesis -- 4. Results and Discussion -- 5. Conclusion -- Back Matter.
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Restricted to subscribers or individual electronic text purchasers.
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This monograph introduces historical background of silver and narrates exhaustive literature review conducted during the research. It gives details about the existing physical, chemical and biological approaches. It also mentions innovative green synthesis methods, designed to render pure silver nanoparticles, and their characterization results. The green synthesis methods replace hazardous chemicals by environment friendly products using principles of green chemistry. The monograph includes the study of the effect of the current, temperature, strength of the precursor, reducing/capping agents and their concentration on the morphology of nanoparticles and the nanostructures. The findings of the tests conducted for antibacterial properties show almost 100% killing efficiency against E. coli, S. Aureus, S. Typhi and P. Aeruginosa. In case of in-vitro testing for anti-cancer properties, 80–98% killing efficiency for MC F-7 Breast cancer cell lines and He-La cervical cancer cell lines were noticed. The as-synthesized silver nanoparticles finds wide applications in the field of medicine, especially targeted drug delivery.
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System requirements: Adobe Acrobat Reader.
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Mode of access: Internet via World Wide Web.
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In English.
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