Polymers for Advanced Technologies is published in response to recent significant changes in the patterns of materials research and development. Worldwide attention has been focused on the critical importance of materials in the creation of new devices and systems. It is now recognized that materials are often the limiting factor in bringing a new technical concept to fruition and that polymers are often the materials of choice in these demanding applications. A significant portion of the polymer research ongoing in the world is directly or indirectly related to the solution of complex, interdisciplinary problems whose successful resolution is necessary for achievement of broad system objectives.Polymers for Advanced Technologies is focused to the interest of scientists and engineers from academia and industry who are participating in these new areas of polymer research and development. It is the intent of this journal to impact the polymer related advanced technologies to meet the challenge of the twenty-first century.Polymers for Advanced Technologies aims at encouraging innovation, invention, imagination and creativity by providing a broad interdisciplinary platform for the presentation of new research and development concepts, theories and results which reflect the changing image and pace of modern polymer science and technology.Polymers for Advanced Technologies aims at becoming the central organ of the new multi-disciplinary polymer oriented materials science of the highest scientific standards. It will publish original research papers on finished studies; communications limited to five typewritten pages plus three illustrations, containing experimental details; review articles of up to 40 pages; letters to the editor and book reviews. Review articles will normally be published by invitation. The Editor-in-Chief welcomes suggestions for reviews.
来源期刊:Polymers for advanced technologiesDOI:10.1002/pat.4553
Mechanical and thermal characterization of sisal fiber reinforced polylactic acid composites
来源期刊:Polymers for Advanced TechnologiesDOI:10.1002/PAT.4488
Photodegradable transient bilayered poly(phthalaldehyde) with improved shelf life
来源期刊:Polymers for Advanced TechnologiesDOI:10.1002/PAT.4552
Time‐delayed photo‐induced depolymerization of poly(phthalaldehyde) self‐immolative polymer via in situ formation of weak conjugate acid
来源期刊:Polymers for Advanced TechnologiesDOI:10.1002/PAT.4596
Additive manufacturing of fire‐retardant ethylene‐vinyl acetate
来源期刊:Polymers for Advanced TechnologiesDOI:10.1002/PAT.4620
Synthesis and fabrication of highly functionalized Jeffamine antimicrobial polymeric coating
来源期刊:Polymers for Advanced TechnologiesDOI:10.1002/PAT.4592
Multiscale physicochemical characterization of a short glass fiber–reinforced polyphenylene sulfide composite under aging and its thermo-oxidative mechanism
来源期刊:Polymers for Advanced TechnologiesDOI:10.1002/PAT.4495
A new approach on improving the fire resistance of polyamide 11 by incorporating sulfur‐based flame retardant
来源期刊:Polymers for Advanced TechnologiesDOI:10.1002/PAT.4591
A modified polyvinylchloride surface with antibacterial and antifouling functions
来源期刊:Polymers for Advanced TechnologiesDOI:10.1002/PAT.4554
Cotton‐hydrogel composite for improved wound healing: Antimicrobial activity and anti‐inflammatory evaluation—Part 2
来源期刊:Polymers for Advanced TechnologiesDOI:10.1002/PAT.4519
Characterization and optimization of a positively charged poly (ethylene glycol)diacrylate hydrogel as an actuating muscle tissue engineering scaffold.
来源期刊:Polymers for advanced technologiesDOI:10.1002/PAT.4681
Spermatogenesis induction of spermatogonial stem cells using nanofibrous poly(l‐lactic acid)/multi‐walled carbon nanotube scaffolds and naringenin
来源期刊:Polymers for Advanced TechnologiesDOI:10.1002/PAT.4733