Matches in SemOpenAlex for { <https://semopenalex.org/work/W2320524663> ?p ?o ?g. }
- W2320524663 endingPage "10976" @default.
- W2320524663 startingPage "10970" @default.
- W2320524663 abstract "A very simple, environmentally friendly, one-step oxidative polymerization route to fabricate polypyrrole (Ppy) nanoparticles of fixed size and morphology was developed and investigated. The herein proposed method is based on the application of sodium dodecyl sulfate and hydrogen peroxide, both easily degradable and cheap materials. The polymerization reaction is performed on 24 h time scale under standard conditions. We monitored a polaronic peak at 465 nm and estimated nanoparticle concentration during various stages of the reaction. Using this data we proposed a mechanism for Ppy nanoparticle formation in accordance with earlier emulsion polymerization mechanisms. Rates of various steps in the polymerization mechanism were accounted for and the resulting particles identified using atomic force microscopy. Application of Ppy nanoparticles prepared by the route presented here seems very promising for biomedical applications where biocompatibility is paramount. In addition, this kind of synthesis could be suitable for the development of solar cells, where very pure and low-cost conducting polymers are required." @default.
- W2320524663 created "2016-06-24" @default.
- W2320524663 creator A5072788860 @default.
- W2320524663 creator A5086468746 @default.
- W2320524663 creator A5086661316 @default.
- W2320524663 date "2011-07-27" @default.
- W2320524663 modified "2023-09-26" @default.
- W2320524663 title "Polymerization Model for Hydrogen Peroxide Initiated Synthesis of Polypyrrole Nanoparticles" @default.
- W2320524663 cites W1569572062 @default.
- W2320524663 cites W1965093492 @default.
- W2320524663 cites W1974091316 @default.
- W2320524663 cites W1974657064 @default.
- W2320524663 cites W1982567338 @default.
- W2320524663 cites W1982783151 @default.
- W2320524663 cites W1983050186 @default.
- W2320524663 cites W1984249153 @default.
- W2320524663 cites W1985283602 @default.
- W2320524663 cites W1990775969 @default.
- W2320524663 cites W1992719116 @default.
- W2320524663 cites W1994809728 @default.
- W2320524663 cites W1999097444 @default.
- W2320524663 cites W2002165014 @default.
- W2320524663 cites W2010977850 @default.
- W2320524663 cites W2011123594 @default.
- W2320524663 cites W2016189477 @default.
- W2320524663 cites W2018650847 @default.
- W2320524663 cites W2027355939 @default.
- W2320524663 cites W2030420696 @default.
- W2320524663 cites W2031036452 @default.
- W2320524663 cites W2031630982 @default.
- W2320524663 cites W2032678309 @default.
- W2320524663 cites W2033653183 @default.
- W2320524663 cites W2035923449 @default.
- W2320524663 cites W2039753232 @default.
- W2320524663 cites W2045941882 @default.
- W2320524663 cites W2049006693 @default.
- W2320524663 cites W2056582256 @default.
- W2320524663 cites W2072245546 @default.
- W2320524663 cites W2077924120 @default.
- W2320524663 cites W2081479110 @default.
- W2320524663 cites W2094049806 @default.
- W2320524663 cites W2099344825 @default.
- W2320524663 cites W2111441713 @default.
- W2320524663 cites W2132371057 @default.
- W2320524663 cites W2153587510 @default.
- W2320524663 doi "https://doi.org/10.1021/la201962a" @default.
- W2320524663 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/21744833" @default.
- W2320524663 hasPublicationYear "2011" @default.
- W2320524663 type Work @default.
- W2320524663 sameAs 2320524663 @default.
- W2320524663 citedByCount "110" @default.
- W2320524663 countsByYear W23205246632012 @default.
- W2320524663 countsByYear W23205246632013 @default.
- W2320524663 countsByYear W23205246632014 @default.
- W2320524663 countsByYear W23205246632015 @default.
- W2320524663 countsByYear W23205246632016 @default.
- W2320524663 countsByYear W23205246632017 @default.
- W2320524663 countsByYear W23205246632018 @default.
- W2320524663 countsByYear W23205246632019 @default.
- W2320524663 countsByYear W23205246632020 @default.
- W2320524663 countsByYear W23205246632021 @default.
- W2320524663 countsByYear W23205246632022 @default.
- W2320524663 countsByYear W23205246632023 @default.
- W2320524663 crossrefType "journal-article" @default.
- W2320524663 hasAuthorship W2320524663A5072788860 @default.
- W2320524663 hasAuthorship W2320524663A5086468746 @default.
- W2320524663 hasAuthorship W2320524663A5086661316 @default.
- W2320524663 hasConcept C127413603 @default.
- W2320524663 hasConcept C155672457 @default.
- W2320524663 hasConcept C171250308 @default.
- W2320524663 hasConcept C178790620 @default.
- W2320524663 hasConcept C185592680 @default.
- W2320524663 hasConcept C188027245 @default.
- W2320524663 hasConcept C192562407 @default.
- W2320524663 hasConcept C199002037 @default.
- W2320524663 hasConcept C2777230088 @default.
- W2320524663 hasConcept C2777232022 @default.
- W2320524663 hasConcept C42360764 @default.
- W2320524663 hasConcept C44228677 @default.
- W2320524663 hasConcept C521977710 @default.
- W2320524663 hasConcept C533411734 @default.
- W2320524663 hasConceptScore W2320524663C127413603 @default.
- W2320524663 hasConceptScore W2320524663C155672457 @default.
- W2320524663 hasConceptScore W2320524663C171250308 @default.
- W2320524663 hasConceptScore W2320524663C178790620 @default.
- W2320524663 hasConceptScore W2320524663C185592680 @default.
- W2320524663 hasConceptScore W2320524663C188027245 @default.
- W2320524663 hasConceptScore W2320524663C192562407 @default.
- W2320524663 hasConceptScore W2320524663C199002037 @default.
- W2320524663 hasConceptScore W2320524663C2777230088 @default.
- W2320524663 hasConceptScore W2320524663C2777232022 @default.
- W2320524663 hasConceptScore W2320524663C42360764 @default.
- W2320524663 hasConceptScore W2320524663C44228677 @default.
- W2320524663 hasConceptScore W2320524663C521977710 @default.
- W2320524663 hasConceptScore W2320524663C533411734 @default.
- W2320524663 hasIssue "17" @default.
- W2320524663 hasLocation W23205246631 @default.
- W2320524663 hasLocation W23205246632 @default.