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|a books978-3-03928-583-9
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|a 9783039285822
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|a 9783039285839
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|a Pasquini, Luca
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|a Advances in Nanoparticles: Synthesis, Characterization, Theoretical Modelling, and Applications
|h Elektronische Ressource
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|b MDPI - Multidisciplinary Digital Publishing Institute
|c 2020
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|a 1 electronic resource (144 p.)
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|a blue
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|a cytotoxic activity
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|a ceria
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|a ovarian carcinoma cells
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|a laser wavelength
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|a silver nanoparticles
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|a isomalto-oligosaccharide
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|a catalytic activity
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|a finite element method
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|a FePt alloy
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|a hierarchical structure
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|a emulsifying property
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|a titanium
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|a plasmonic coupling
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|a synergistic effect
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|a A375 cells
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|a core-shell particles
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|a nanocomposites
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|a InPBi
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|a laser melting in liquid
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|a gas phase condensation
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|a methylene
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|a cobalt
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|a Technology: general issues / bicssc
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|a magnetic phase
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|a graphene
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|a thermal aggregation
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|a physical adsorption
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|a phase separation
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|a gold nanorods
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|a electron microscopy
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|a nanoparticle
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|a egg white protein
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|a mobility
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|a super-luminescent diode
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|a emission spectrum
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|a alloys
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|a hot spot
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|a nanoparticles
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|a iron
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|a synthesis
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|a Au-Fe alloy
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|a non-aqueous solvent controlled sol-gel route
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|a one-pot hydrothermal method
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|a pulse laser deposition
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|a La-Na co-doped TiO2
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|a zeta potential
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|a reaction control
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|a phytosynthesis
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|a glycation
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|a silicon quantum dots
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|a submicrometre spherical particles
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|a Ligustrum ovalifolium L.
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|a quantum dot
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|a photothermal therapy
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|a PLD
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|a metal oxides
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|a eng
|2 ISO 639-2
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|b DOAB
|a Directory of Open Access Books
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|a Creative Commons (cc), https://creativecommons.org/licenses/by-nc-nd/4.0/
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|a 10.3390/books978-3-03928-583-9
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|u https://directory.doabooks.org/handle/20.500.12854/40318
|z DOAB: description of the publication
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|u https://www.mdpi.com/books/pdfview/book/2153
|7 0
|x Verlag
|3 Volltext
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|a 700
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|a 600
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|a This book focuses on recent advances in the synthesis of nanoparticles, their characterization, and their applications in different fields such as catalysis, photonics, magnetism, and nanomedicine. Nanoparticles receive a large share of the worldwide research activity in contemporary materials science. This is witnessed by the number of scientific papers with ""nanoparticle"" as a keyword, increasing linearly in the last 10 years from about 16,000 in 2009 to about 50,000 in 2019. This impressive widespread interest stems from the basic science of nanoparticles, which constitute a bridge between the molecular and the bulk worlds, as well as from their technological applications. The preparation of nanoparticles is a crossroad of materials science where chemists, physicists, engineers, and even biologists frequently meet, leading to a continuous improvement of existing techniques and to the invention of new methods. The reader interested in nanoparticles synthesis and properties will here find a valuable selection of scientific cases that cannot cover all methods and applications relevant to the field, but still provide an updated overview on the fervent research activity focused on nanoparticles.
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