Matches in SemOpenAlex for { <https://semopenalex.org/work/W3020782711> ?p ?o ?g. }
- W3020782711 endingPage "104825" @default.
- W3020782711 startingPage "104825" @default.
- W3020782711 abstract "Polyvinylidene fluoride (PVDF)/barium titanate (BaTiO3) composites are becoming increasingly attractive in bone repair since it combines the advantage of polymer flexibility and ceramic piezoelectric constant. Herein, silver (Ag) nanoparticles were decorated on polydopamine functioned BaTiO3 (Ag-pBT) by in situ growth. Then the strawberry-like structured Ag-pBT nanoparticles were introduced into PVDF scaffold fabricated by selective laser sintering. On one hand, Ag nanoparticles would act as a conductive phase to enhance the strength of the polarized electric field on BaTiO3, thereby forcing more domains to be aligned in the direction of the electric field and make piezoelectric effect of BaTiO3 fully play in composite scaffold. On the other hand, Ag nanoparticles would attack multiple targets in bacteria by release of Ag+ and production of reactive oxygen species. In fact, the antibacterial activity is highly desirable for bone repair. Results demonstrated that the PVDF/4Ag-pBT scaffold exhibited enhanced piezoelectric properties with output current and voltage increased by 50% and 40% than that of PVDF/pBT, respectively. In vitro cell culture confirmed that the enhanced electric output further promoted cell proliferation and differentiation. Meanwhile, the scaffold presented robust antibacterial activity against E.coli." @default.
- W3020782711 created "2020-05-01" @default.
- W3020782711 creator A5012211417 @default.
- W3020782711 creator A5014863660 @default.
- W3020782711 creator A5015995069 @default.
- W3020782711 creator A5028368524 @default.
- W3020782711 creator A5032073962 @default.
- W3020782711 creator A5048211064 @default.
- W3020782711 creator A5070287521 @default.
- W3020782711 creator A5078080570 @default.
- W3020782711 date "2020-08-01" @default.
- W3020782711 modified "2023-10-14" @default.
- W3020782711 title "A strawberry-like Ag-decorated barium titanate enhances piezoelectric and antibacterial activities of polymer scaffold" @default.
- W3020782711 cites W1578249067 @default.
- W3020782711 cites W1975672338 @default.
- W3020782711 cites W1985325611 @default.
- W3020782711 cites W1987077874 @default.
- W3020782711 cites W2042593562 @default.
- W3020782711 cites W2060341275 @default.
- W3020782711 cites W2068623582 @default.
- W3020782711 cites W2072053894 @default.
- W3020782711 cites W2074598258 @default.
- W3020782711 cites W2076263143 @default.
- W3020782711 cites W2111882240 @default.
- W3020782711 cites W2112519343 @default.
- W3020782711 cites W2123127161 @default.
- W3020782711 cites W2167174841 @default.
- W3020782711 cites W2317582729 @default.
- W3020782711 cites W2324018042 @default.
- W3020782711 cites W2334569301 @default.
- W3020782711 cites W2341060906 @default.
- W3020782711 cites W2466698266 @default.
- W3020782711 cites W2530528982 @default.
- W3020782711 cites W2537653520 @default.
- W3020782711 cites W2569810971 @default.
- W3020782711 cites W2589721123 @default.
- W3020782711 cites W2607087074 @default.
- W3020782711 cites W2732328877 @default.
- W3020782711 cites W2741738022 @default.
- W3020782711 cites W2759298135 @default.
- W3020782711 cites W2763881952 @default.
- W3020782711 cites W2767814393 @default.
- W3020782711 cites W2768031558 @default.
- W3020782711 cites W2792728238 @default.
- W3020782711 cites W2793354665 @default.
- W3020782711 cites W2801921614 @default.
- W3020782711 cites W2804310752 @default.
- W3020782711 cites W2804763898 @default.
- W3020782711 cites W2889957053 @default.
- W3020782711 cites W2898315421 @default.
- W3020782711 cites W2899692486 @default.
- W3020782711 cites W2899997160 @default.
- W3020782711 cites W2906878982 @default.
- W3020782711 cites W2911661529 @default.
- W3020782711 cites W2912310466 @default.
- W3020782711 cites W2912387238 @default.
- W3020782711 cites W2921555806 @default.
- W3020782711 cites W2953231700 @default.
- W3020782711 cites W2955115727 @default.
- W3020782711 cites W2963756991 @default.
- W3020782711 cites W2973175261 @default.
- W3020782711 cites W2981146643 @default.
- W3020782711 cites W2982640721 @default.
- W3020782711 cites W2986594548 @default.
- W3020782711 cites W2993765043 @default.
- W3020782711 cites W2994923740 @default.
- W3020782711 cites W2995914317 @default.
- W3020782711 cites W2999121272 @default.
- W3020782711 cites W3004392174 @default.
- W3020782711 cites W3005752633 @default.
- W3020782711 cites W3007014517 @default.
- W3020782711 cites W3008495647 @default.
- W3020782711 cites W879186417 @default.
- W3020782711 doi "https://doi.org/10.1016/j.nanoen.2020.104825" @default.
- W3020782711 hasPublicationYear "2020" @default.
- W3020782711 type Work @default.
- W3020782711 sameAs 3020782711 @default.
- W3020782711 citedByCount "230" @default.
- W3020782711 countsByYear W30207827112020 @default.
- W3020782711 countsByYear W30207827112021 @default.
- W3020782711 countsByYear W30207827112022 @default.
- W3020782711 countsByYear W30207827112023 @default.
- W3020782711 crossrefType "journal-article" @default.
- W3020782711 hasAuthorship W3020782711A5012211417 @default.
- W3020782711 hasAuthorship W3020782711A5014863660 @default.
- W3020782711 hasAuthorship W3020782711A5015995069 @default.
- W3020782711 hasAuthorship W3020782711A5028368524 @default.
- W3020782711 hasAuthorship W3020782711A5032073962 @default.
- W3020782711 hasAuthorship W3020782711A5048211064 @default.
- W3020782711 hasAuthorship W3020782711A5070287521 @default.
- W3020782711 hasAuthorship W3020782711A5078080570 @default.
- W3020782711 hasConcept C100082104 @default.
- W3020782711 hasConcept C127413603 @default.
- W3020782711 hasConcept C134132462 @default.
- W3020782711 hasConcept C136229726 @default.
- W3020782711 hasConcept C155672457 @default.
- W3020782711 hasConcept C159985019 @default.
- W3020782711 hasConcept C171250308 @default.