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Green Synthesis of Nanomaterials



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Autore: Benelli Giovanni Visualizza persona
Titolo: Green Synthesis of Nanomaterials Visualizza cluster
Pubblicazione: MDPI - Multidisciplinary Digital Publishing Institute, 2019
Descrizione fisica: 1 electronic resource (224 p.)
Soggetto non controllato: anti-fungal
chitosan
graphene oxide
energy density
sponges
Escherichia coli
filariasis
titanium dioxide nanoparticles
synthetic amorphous silica (SAS)
green synthesis
ionic nanocomplexes
methylene blue
cacao
mesoporous materials
polyol-assisted fluoride ions slow-release strategy
stored product insects
polyarginine
solvothermal synthesis
agricultural pests
time dependence
magnetic nanomaterials
in vitro testing
poly-L-lactic acid
Raman spectroscopy
sample preparation
self-assembly
solid carbon spheres
crystallographic phase control
microwave injured cells
CuInS2
antimicrobial
ZnO NPs
Scadoxus multiflorus
lipase
mosquito control
biocatalysis
hyaluronic acid
hybrid nanoflowers
Desulfovibrio desulfuricans
reduced graphene oxide
ovicidal
enzyme immobilization
palladium nanoparticles
non-cytotoxic
photocatalysis
insecticides
ultrasonic dispersing (USD)
X-ray photoelectron spectroscopy
cell proliferation
CVD process
NaYF4 mesocrystals
microwave energy
leaf
dengue
hollow carbon spheres
gum kondagogu
functionalization
silver nanoparticles
larvicidal
nanostructured
plasma
electrical conductivity
larvicides
TEM
nanomaterials (NMs)
carbon spheres
Sommario/riassunto: Nanomaterials possess astonishing physical and chemical properties. They play a key role in the development of novel and effective drugs, catalysts, sensors, and pesticides, to cite just a few examples. Notably, the synthesis of nanomaterials is usually achieved with chemical and physical methods needing the use of extremely toxic chemicals or high-energy inputs. To move towards more eco-friendly processes, researchers have recently focused on so-called “green synthesis”, where microbial, animal-, and plant-borne compounds can be used as cheap reducing and stabilizing agents to fabricate nanomaterials. Green synthesis routes are cheap, environmentally sustainable, and can lead to the fabrication of nano-objects with controlled sizes and shapes—two key features determining their bioactivity.
Titolo autorizzato: Green Synthesis of Nanomaterials  Visualizza cluster
ISBN: 3-03921-787-9
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910367745303321
Lo trovi qui: Univ. Federico II
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