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Polymers for Advanced Technologies
Latest Publications
TOTAL DOCUMENTS
5612
(FIVE YEARS 1078)
H-INDEX
85
(FIVE YEARS 12)
Published By Wiley (John Wiley & Sons)
1099-1581, 1042-7147
Latest Documents
Most Cited Documents
Contributed Authors
Related Sources
Related Keywords
Latest Documents
Most Cited Documents
Contributed Authors
Related Sources
Related Keywords
Hierarchically structured polyvinylidene fluoride core‐shell composite yarn based on electrospinning coating method to improve piezoelectricity
Polymers for Advanced Technologies
◽
10.1002/pat.5613
◽
2022
◽
Author(s):
Xiu‐Ping Li
◽
Meng‐Meng Wu
◽
Hao‐Kai Peng
◽
Xue‐Fei Zhang
◽
Yan Ting Wang
◽
...
Keyword(s):
Polyvinylidene Fluoride
◽
Core Shell
◽
Composite Yarn
◽
Coating Method
◽
Shell Composite
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Piezoelectric biodegradable poly(3‐hydroxybutyrate‐co‐3‐hydroxyvalerate) based electrospun fiber mats with tailored porosity
Polymers for Advanced Technologies
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10.1002/pat.5582
◽
2022
◽
Author(s):
Teresa Marques‐Almeida
◽
Liliana C. Fernandes
◽
Daniela M. Correia
◽
Carmen R. Tubio
◽
Senentxu Lanceros‐Mendez
◽
...
Keyword(s):
Electrospun Fiber
◽
Fiber Mats
◽
Biodegradable Poly
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Conductive poly(ε‐caprolactone)/polylactic acid scaffolds for tissue engineering applications: Synergy effect of zirconium nanoparticles and polypyrrole
Polymers for Advanced Technologies
◽
10.1002/pat.5611
◽
2022
◽
Author(s):
Aliakbar Jafari
◽
Hadis Mirzaei
◽
Mir Alireza Shafiei
◽
Vafa Fakhri
◽
Amirhosein Yazdanbakhsh
◽
...
Keyword(s):
Tissue Engineering
◽
Polylactic Acid
◽
Synergy Effect
◽
Engineering Applications
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Preparation of polybenzimidazole‐based mixed matrix membranes containing modified‐COK ‐12 mesoporous silica and evaluation of the mixed‐gas separation performance
Polymers for Advanced Technologies
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10.1002/pat.5610
◽
2022
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Author(s):
Griselda Castruita‐de León
◽
Ángel de Jesús Montes‐Luna
◽
Claudia Y. Yeverino‐Miranda
◽
Germán Alvarado‐Tenorio
◽
Héctor Iván Meléndez‐Ortiz
◽
...
Keyword(s):
Mesoporous Silica
◽
Gas Separation
◽
Mixed Matrix Membranes
◽
Separation Performance
◽
Mixed Matrix
◽
Mixed Gas
◽
Gas Separation Performance
◽
Matrix Membranes
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POSS ‐modified ammonium polyphosphate for improving flame retardant of epoxy resins
Polymers for Advanced Technologies
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10.1002/pat.5592
◽
2022
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Author(s):
Yanling Feng
◽
Wei Wu
◽
Zhengyi Wang
◽
Tianyu Zhao
Keyword(s):
Flame Retardant
◽
Epoxy Resins
◽
Ammonium Polyphosphate
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High efficient degradation of organic dyes by polypyrrole‐multiwall carbon nanotubes nanocomposites
Polymers for Advanced Technologies
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10.1002/pat.5609
◽
2022
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Author(s):
Ai Ling Pang
◽
Agus Arsad
◽
Mohsen Ahmadipour
◽
Azrul Azlan Hamzah
◽
Muhammad Abbas Ahmad Zaini
◽
...
Keyword(s):
Carbon Nanotubes
◽
Organic Dyes
◽
Multiwall Carbon Nanotubes
◽
High Efficient
◽
Multiwall Carbon
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Preparation and characterization of highly elongated polydimethylsiloxane nanosheets
Polymers for Advanced Technologies
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10.1002/pat.5591
◽
2022
◽
Author(s):
Sho Mihara
◽
Shinji Takeoka
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Tuning magnetic response and ionic conductivity of electrospun hybrid membranes for tissue regeneration strategies
Polymers for Advanced Technologies
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10.1002/pat.5596
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2022
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Author(s):
Bruno Hermenegildo
◽
Daniela M. Correia
◽
Clarisse Ribeiro
◽
João P. Serra
◽
Leyre Pérez
◽
...
Keyword(s):
Ionic Conductivity
◽
Tissue Regeneration
◽
Magnetic Response
◽
Hybrid Membranes
◽
Regeneration Strategies
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Amorphous polyamide m ‐xylylenediamine‐adipic acid‐isophthalic acid copolymer (MXD6I) : Evaluation of oxygen barrier property and free volume in high humidity condition
Polymers for Advanced Technologies
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10.1002/pat.5608
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2022
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Author(s):
Masaki Yamanaka
◽
Takahiro Muraya
◽
Takahumi Oda
◽
Nobuya Saegusa
◽
Ryota Watanabe
◽
...
Keyword(s):
Free Volume
◽
Adipic Acid
◽
Isophthalic Acid
◽
Barrier Property
◽
High Humidity
◽
Oxygen Barrier
◽
Humidity Condition
◽
Acid Copolymer
◽
Oxygen Barrier Property
◽
High Humidity Condition
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The preparation of polyamide 11 composites with extremely long ignition time
Polymers for Advanced Technologies
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10.1002/pat.5593
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2022
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Author(s):
Xiaodong Jin
◽
Suping Cui
◽
Shibing Sun
◽
Jun Sun
◽
Sheng Zhang
◽
...
Keyword(s):
Ignition Time
◽
Polyamide 11
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