Polymer Clay Nano-composites

This Special Issue focuses on the current state-of-the-art of “Polymer Clay Nano-Composites” for biomedical, anticorrosion, antibacterial, and other applications. Clay–polymer composite nanomaterials represent an emerging area of research. Loading polymers with clay particles essentially enhances th...

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Tác giả chính: Leporatti, Stefano
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Ngôn ngữ:Tiếng Anh
Được phát hành: MDPI - Multidisciplinary Digital Publishing Institute 2021
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LAP
Truy cập trực tuyến:42617
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author Leporatti, Stefano
author_browse Leporatti, Stefano
author_facet Leporatti, Stefano
author_sort Leporatti, Stefano
collection Directory of Open Access Books
description This Special Issue focuses on the current state-of-the-art of “Polymer Clay Nano-Composites” for biomedical, anticorrosion, antibacterial, and other applications. Clay–polymer composite nanomaterials represent an emerging area of research. Loading polymers with clay particles essentially enhances the composite strength features. Of particular interest are different nano-assembly methods, such as silane mono and multilayers, polyelectrolyte layer-by-layer assembly, and others. An important development was reached for tubular and fibrous clay nanoparticles, such as halloysite, sepiolite, and imogolite. Polymer clay nanoparticles can be prepared as sheets with 1-nm thickness and width of a few hundred nm (e.g., kaolin and montmorillonite). Fibrous clays significantly reinforce the nano-composites in the assembly with biopolymers and other green polymers, leading to functional hybrid bio nano-composites. The scope of this Special Issue comprehensively includes the synthesis and characterization of polymer clay nano-composites used for several applications, including nano-clay polymer composites and hybrid nano-assemblies.
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id doab-20.500.12854ir-56631
institution Directory of Open Access Books
language eng
publishDate 2021
publishDateRange 2021
publishDateSort 2021
publisher MDPI - Multidisciplinary Digital Publishing Institute
publisherStr MDPI - Multidisciplinary Digital Publishing Institute
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spelling doab-20.500.12854ir-566312024-04-05T12:32:06Z Polymer Clay Nano-composites Leporatti, Stefano QH301-705.5 Q1-390 graphene oxide n/a polysaccharide water resistance nanocomposites layered silicate polyimide intercalation barrier composite indentation recovery ionic network organically modified clays nanotechnology 2-polybutadiene doxorubicin sericite adsorption morphology phenyltrimethylammonium chloride supercritical CO2 blowing agent halloysite nanotubes mechanical properties glycerol ammonium persulfate TGA 1 interfacial interactions carbon fibers nanocomposite materials silica sol N?-methylenebisacrylamide intercalation stability polymer composites clay–polymer nanocomposites in-situ intercalation attapulgite/polypyrrole nanocomposite fish gelatin polyacrylic acid fuzzy optimization AFM variable cost organic montmorillonite positron annihilation whey protein isolate interface CTAB N hyaluronic acid swelling capacity water shutoff montmorillonite sol–gel transition in situ polymerization hexadecyltrimethylammonium bromide clay-amine interaction mechanisms gelation kinetics FTIR surface grafting Pareto set la uptake and release polyamines polystyrene foam CD44 receptor targeted tribological property polyethylene oxide structure effects catalytic composite polystyrene nanoclay thermal stability sacrificial bond Pd catalysis radical polymerization dental resins reinforcing montmorillonite clays coatings atrazine cellulose nanofibrils soap-free emulsion polymerization LAP doubly functionalized montmorillonite dispersion organo-clays thema EDItEUR::P Mathematics and Science::PS Biology, life sciences This Special Issue focuses on the current state-of-the-art of “Polymer Clay Nano-Composites” for biomedical, anticorrosion, antibacterial, and other applications. Clay–polymer composite nanomaterials represent an emerging area of research. Loading polymers with clay particles essentially enhances the composite strength features. Of particular interest are different nano-assembly methods, such as silane mono and multilayers, polyelectrolyte layer-by-layer assembly, and others. An important development was reached for tubular and fibrous clay nanoparticles, such as halloysite, sepiolite, and imogolite. Polymer clay nanoparticles can be prepared as sheets with 1-nm thickness and width of a few hundred nm (e.g., kaolin and montmorillonite). Fibrous clays significantly reinforce the nano-composites in the assembly with biopolymers and other green polymers, leading to functional hybrid bio nano-composites. The scope of this Special Issue comprehensively includes the synthesis and characterization of polymer clay nano-composites used for several applications, including nano-clay polymer composites and hybrid nano-assemblies. 2021-02-11T23:26:42Z 2021-02-11T23:26:42Z 2019-12-09 11:49:16 2019 book 42617 9783039216529 9783039216536 https://directory.doabooks.org/handle/20.500.12854/56631 eng application/octet-stream Attribution-NonCommercial-NoDerivatives 4.0 International https://mdpi.com/books/pdfview/book/1762 MDPI - Multidisciplinary Digital Publishing Institute 10.3390/books978-3-03921-653-6 10.3390/books978-3-03921-653-6 46cabcaa-dd94-4bfe-87b4-55023c1b36d0 9783039216529 9783039216536 246 open access
spellingShingle QH301-705.5
Q1-390
graphene oxide
n/a
polysaccharide
water resistance
nanocomposites
layered silicate
polyimide
intercalation
barrier
composite
indentation recovery
ionic network
organically modified clays
nanotechnology
2-polybutadiene
doxorubicin
sericite
adsorption
morphology
phenyltrimethylammonium chloride
supercritical CO2
blowing agent
halloysite nanotubes
mechanical properties
glycerol
ammonium persulfate
TGA
1
interfacial interactions
carbon fibers
nanocomposite materials
silica sol
N?-methylenebisacrylamide
intercalation stability
polymer composites
clay–polymer nanocomposites
in-situ intercalation
attapulgite/polypyrrole nanocomposite
fish gelatin
polyacrylic acid
fuzzy optimization
AFM
variable cost
organic montmorillonite
positron annihilation
whey protein isolate
interface
CTAB
N
hyaluronic acid
swelling capacity
water shutoff
montmorillonite
sol–gel transition
in situ polymerization
hexadecyltrimethylammonium bromide
clay-amine interaction mechanisms
gelation kinetics
FTIR
surface grafting
Pareto set
la uptake and release
polyamines
polystyrene foam
CD44 receptor targeted
tribological property
polyethylene oxide
structure effects
catalytic composite
polystyrene
nanoclay
thermal stability
sacrificial bond
Pd catalysis
radical polymerization
dental resins
reinforcing
montmorillonite clays
coatings
atrazine
cellulose nanofibrils
soap-free emulsion polymerization
LAP
doubly functionalized montmorillonite
dispersion
organo-clays
thema EDItEUR::P Mathematics and Science::PS Biology, life sciences
Leporatti, Stefano
Polymer Clay Nano-composites
title Polymer Clay Nano-composites
title_full Polymer Clay Nano-composites
title_fullStr Polymer Clay Nano-composites
title_full_unstemmed Polymer Clay Nano-composites
title_short Polymer Clay Nano-composites
title_sort polymer clay nano composites
topic QH301-705.5
Q1-390
graphene oxide
n/a
polysaccharide
water resistance
nanocomposites
layered silicate
polyimide
intercalation
barrier
composite
indentation recovery
ionic network
organically modified clays
nanotechnology
2-polybutadiene
doxorubicin
sericite
adsorption
morphology
phenyltrimethylammonium chloride
supercritical CO2
blowing agent
halloysite nanotubes
mechanical properties
glycerol
ammonium persulfate
TGA
1
interfacial interactions
carbon fibers
nanocomposite materials
silica sol
N?-methylenebisacrylamide
intercalation stability
polymer composites
clay–polymer nanocomposites
in-situ intercalation
attapulgite/polypyrrole nanocomposite
fish gelatin
polyacrylic acid
fuzzy optimization
AFM
variable cost
organic montmorillonite
positron annihilation
whey protein isolate
interface
CTAB
N
hyaluronic acid
swelling capacity
water shutoff
montmorillonite
sol–gel transition
in situ polymerization
hexadecyltrimethylammonium bromide
clay-amine interaction mechanisms
gelation kinetics
FTIR
surface grafting
Pareto set
la uptake and release
polyamines
polystyrene foam
CD44 receptor targeted
tribological property
polyethylene oxide
structure effects
catalytic composite
polystyrene
nanoclay
thermal stability
sacrificial bond
Pd catalysis
radical polymerization
dental resins
reinforcing
montmorillonite clays
coatings
atrazine
cellulose nanofibrils
soap-free emulsion polymerization
LAP
doubly functionalized montmorillonite
dispersion
organo-clays
thema EDItEUR::P Mathematics and Science::PS Biology, life sciences
topic_facet QH301-705.5
Q1-390
graphene oxide
n/a
polysaccharide
water resistance
nanocomposites
layered silicate
polyimide
intercalation
barrier
composite
indentation recovery
ionic network
organically modified clays
nanotechnology
2-polybutadiene
doxorubicin
sericite
adsorption
morphology
phenyltrimethylammonium chloride
supercritical CO2
blowing agent
halloysite nanotubes
mechanical properties
glycerol
ammonium persulfate
TGA
1
interfacial interactions
carbon fibers
nanocomposite materials
silica sol
N?-methylenebisacrylamide
intercalation stability
polymer composites
clay–polymer nanocomposites
in-situ intercalation
attapulgite/polypyrrole nanocomposite
fish gelatin
polyacrylic acid
fuzzy optimization
AFM
variable cost
organic montmorillonite
positron annihilation
whey protein isolate
interface
CTAB
N
hyaluronic acid
swelling capacity
water shutoff
montmorillonite
sol–gel transition
in situ polymerization
hexadecyltrimethylammonium bromide
clay-amine interaction mechanisms
gelation kinetics
FTIR
surface grafting
Pareto set
la uptake and release
polyamines
polystyrene foam
CD44 receptor targeted
tribological property
polyethylene oxide
structure effects
catalytic composite
polystyrene
nanoclay
thermal stability
sacrificial bond
Pd catalysis
radical polymerization
dental resins
reinforcing
montmorillonite clays
coatings
atrazine
cellulose nanofibrils
soap-free emulsion polymerization
LAP
doubly functionalized montmorillonite
dispersion
organo-clays
thema EDItEUR::P Mathematics and Science::PS Biology, life sciences
url 42617
work_keys_str_mv AT leporattistefano polymerclaynanocomposites