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Sonochemical production of nanomaterials
~
Cavalieri, Francesca.
Sonochemical production of nanomaterials
Record Type:
Electronic resources : Monograph/item
Title/Author:
Sonochemical production of nanomaterialsby Kenji Okitsu, Francesca Cavalieri.
Author:
Okitsu, Kenji.
other author:
Cavalieri, Francesca.
Published:
Cham :Springer International Publishing :2018.
Description:
vi, 62 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Ultrasonic imagingMethods.
Online resource:
https://doi.org/10.1007/978-3-319-96734-9
ISBN:
9783319967349$q(electronic bk.)
Sonochemical production of nanomaterials
Okitsu, Kenji.
Sonochemical production of nanomaterials
[electronic resource] /by Kenji Okitsu, Francesca Cavalieri. - Cham :Springer International Publishing :2018. - vi, 62 p. :ill., digital ;24 cm. - Ultrasound and sonochemistry,2511-123X. - Ultrasound and sonochemistry..
Chapter 1 Fundamental of Acoustic bubbles -- Chapter 2 Chemical Effect of Acoustic Cavitation on Nanomaterial Synthesis -- Chapter 3 Physical Effect of Acoustic Cavitation on Nanomaterial Synthesis -- Chapter 4 Other: Ultrasound and Nanomaterials -- Chapter 5 Ultrasonic synthesis, modification and assembly of protein shelled microbubbles -- Chapter 6 Synthesis of fluorescent antioxidant nanoparticles using ultrasound responsive amino acids -- Chapter 7 Synthesis of nanoparticles using ultrasound responsive phenolic compounds.
This book discusses the ultrasonic synthesis, characterization and application of various nanoparticles, as well as the ultrasonic synthesis of metal and inorganic nanoparticles such as noble metals, transition metals, semiconductors, nanocomposites, alloys and catalysts. In addition, it describes the engineering of micro- and nanosystems using ultrasound-responsive biomolecules. In acoustic cavitation, unique phenomena based on bubbles dynamics, extreme high-temperature and pressure conditions, radical reactions, extreme heating and cooling rates, strong shockwaves, and microstreaming are generated, and under certain conditions, mist generation (atomization of a liquid) is effectively induced by ultrasonic irradiation. These unique phenomena can be used to produce various high-performance functional metal and inorganic nanoparticles. Nanoparticles and nanomaterials are key materials in advancing nanotechnology and as such ultrasound and sonochemical techniques for producing nanoparticles and nanomaterials have been actively studied for the last two decades. Although a few professional books related to "ultrasound" and "nanomaterials" have been published, these mainly target professional researchers. This book covers this topic in a way that appeals to graduate students, researchers and engineers.
ISBN: 9783319967349$q(electronic bk.)
Standard No.: 10.1007/978-3-319-96734-9doiSubjects--Topical Terms:
309796
Ultrasonic imaging
--Methods.
LC Class. No.: RC787.44 / .O358 2018
Dewey Class. No.: 616.07543
Sonochemical production of nanomaterials
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Chapter 1 Fundamental of Acoustic bubbles -- Chapter 2 Chemical Effect of Acoustic Cavitation on Nanomaterial Synthesis -- Chapter 3 Physical Effect of Acoustic Cavitation on Nanomaterial Synthesis -- Chapter 4 Other: Ultrasound and Nanomaterials -- Chapter 5 Ultrasonic synthesis, modification and assembly of protein shelled microbubbles -- Chapter 6 Synthesis of fluorescent antioxidant nanoparticles using ultrasound responsive amino acids -- Chapter 7 Synthesis of nanoparticles using ultrasound responsive phenolic compounds.
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This book discusses the ultrasonic synthesis, characterization and application of various nanoparticles, as well as the ultrasonic synthesis of metal and inorganic nanoparticles such as noble metals, transition metals, semiconductors, nanocomposites, alloys and catalysts. In addition, it describes the engineering of micro- and nanosystems using ultrasound-responsive biomolecules. In acoustic cavitation, unique phenomena based on bubbles dynamics, extreme high-temperature and pressure conditions, radical reactions, extreme heating and cooling rates, strong shockwaves, and microstreaming are generated, and under certain conditions, mist generation (atomization of a liquid) is effectively induced by ultrasonic irradiation. These unique phenomena can be used to produce various high-performance functional metal and inorganic nanoparticles. Nanoparticles and nanomaterials are key materials in advancing nanotechnology and as such ultrasound and sonochemical techniques for producing nanoparticles and nanomaterials have been actively studied for the last two decades. Although a few professional books related to "ultrasound" and "nanomaterials" have been published, these mainly target professional researchers. This book covers this topic in a way that appeals to graduate students, researchers and engineers.
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Chemistry and Materials Science (Springer-11644)
based on 0 review(s)
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