Matches in SemOpenAlex for { <https://semopenalex.org/work/W4366606435> ?p ?o ?g. }
- W4366606435 endingPage "414897" @default.
- W4366606435 startingPage "414897" @default.
- W4366606435 abstract "Silver nanoparticles (AgNPs) synthesised via green synthesis using clove extract were incorporated into PEDOT:PSS polymers using the chemical solution deposition technique (CSD), and the effect of surface plasmon resonance in the nanocomposites was investigated. To assess the effect of Silver nanoparticles (AgNPs) (and surface plasmon resonance) on the polymer, TEM, UV–Visible spectroscopy, FTIR, Ellipsometry, and Photoluminescence are used. The surface plasmon peak of the curves in UV–Vis spectroscopy study of these films has shifted towards the infrared region, which may be useful in increasing the efficiency of optical devices. The optical band gap calculated using UV–Vis results reduced from 1.77eV for pure PEDOT: PSS to 1.53eV for the nanocomposite. Ellipsometry data is used to calculate Ψ, Δ values and thickness of films. The Wemple-DiDomenico (WDD) single oscillator model was used to analyse and estimate the dispersion parameters of these films. Refractive indices the films were calculated in the range 1.256–1.643 using the Ellipsometry data." @default.
- W4366606435 created "2023-04-23" @default.
- W4366606435 creator A5010371445 @default.
- W4366606435 creator A5012355980 @default.
- W4366606435 creator A5040041506 @default.
- W4366606435 creator A5053967256 @default.
- W4366606435 creator A5076232664 @default.
- W4366606435 date "2023-08-01" @default.
- W4366606435 modified "2023-10-02" @default.
- W4366606435 title "Synthesis of PEDOT: PSS thin film doped with silver nanoparticles via green approach and study their refractive indices and dispersive parameters using Wemple–DiDomenico (WDD) single oscillator model" @default.
- W4366606435 cites W1964416305 @default.
- W4366606435 cites W1977058604 @default.
- W4366606435 cites W1979056121 @default.
- W4366606435 cites W1979494982 @default.
- W4366606435 cites W1983609021 @default.
- W4366606435 cites W1987218005 @default.
- W4366606435 cites W1995173103 @default.
- W4366606435 cites W1998692051 @default.
- W4366606435 cites W1999318161 @default.
- W4366606435 cites W2012089174 @default.
- W4366606435 cites W2020992299 @default.
- W4366606435 cites W2035337410 @default.
- W4366606435 cites W2035979126 @default.
- W4366606435 cites W2045761567 @default.
- W4366606435 cites W2057374832 @default.
- W4366606435 cites W2071759991 @default.
- W4366606435 cites W2084885390 @default.
- W4366606435 cites W2092925168 @default.
- W4366606435 cites W2095421543 @default.
- W4366606435 cites W2104708743 @default.
- W4366606435 cites W2105099069 @default.
- W4366606435 cites W2116080962 @default.
- W4366606435 cites W2126689611 @default.
- W4366606435 cites W2130471732 @default.
- W4366606435 cites W2139409061 @default.
- W4366606435 cites W2153852524 @default.
- W4366606435 cites W2157406321 @default.
- W4366606435 cites W2167127701 @default.
- W4366606435 cites W2220071646 @default.
- W4366606435 cites W2528929901 @default.
- W4366606435 cites W2553363281 @default.
- W4366606435 cites W2611085413 @default.
- W4366606435 cites W2751449137 @default.
- W4366606435 cites W2917413244 @default.
- W4366606435 cites W2943881161 @default.
- W4366606435 cites W2943918429 @default.
- W4366606435 cites W2973784530 @default.
- W4366606435 cites W2991410365 @default.
- W4366606435 cites W3015974552 @default.
- W4366606435 cites W3018326200 @default.
- W4366606435 cites W3020386424 @default.
- W4366606435 cites W3097176623 @default.
- W4366606435 cites W3100971409 @default.
- W4366606435 cites W3140062992 @default.
- W4366606435 cites W3195081620 @default.
- W4366606435 cites W3210207333 @default.
- W4366606435 cites W4224135030 @default.
- W4366606435 cites W4289717595 @default.
- W4366606435 cites W4292953560 @default.
- W4366606435 cites W4306722635 @default.
- W4366606435 cites W4311283157 @default.
- W4366606435 doi "https://doi.org/10.1016/j.physb.2023.414897" @default.
- W4366606435 hasPublicationYear "2023" @default.
- W4366606435 type Work @default.
- W4366606435 citedByCount "0" @default.
- W4366606435 crossrefType "journal-article" @default.
- W4366606435 hasAuthorship W4366606435A5010371445 @default.
- W4366606435 hasAuthorship W4366606435A5012355980 @default.
- W4366606435 hasAuthorship W4366606435A5040041506 @default.
- W4366606435 hasAuthorship W4366606435A5053967256 @default.
- W4366606435 hasAuthorship W4366606435A5076232664 @default.
- W4366606435 hasConcept C106847996 @default.
- W4366606435 hasConcept C110879396 @default.
- W4366606435 hasConcept C113196181 @default.
- W4366606435 hasConcept C121332964 @default.
- W4366606435 hasConcept C127413603 @default.
- W4366606435 hasConcept C136676167 @default.
- W4366606435 hasConcept C155672457 @default.
- W4366606435 hasConcept C159985019 @default.
- W4366606435 hasConcept C160892712 @default.
- W4366606435 hasConcept C170029824 @default.
- W4366606435 hasConcept C171250308 @default.
- W4366606435 hasConcept C178790620 @default.
- W4366606435 hasConcept C18293161 @default.
- W4366606435 hasConcept C185592680 @default.
- W4366606435 hasConcept C19067145 @default.
- W4366606435 hasConcept C192562407 @default.
- W4366606435 hasConcept C31499863 @default.
- W4366606435 hasConcept C32891209 @default.
- W4366606435 hasConcept C42067758 @default.
- W4366606435 hasConcept C42360764 @default.
- W4366606435 hasConcept C49040817 @default.
- W4366606435 hasConcept C521977710 @default.
- W4366606435 hasConcept C57863236 @default.
- W4366606435 hasConcept C62520636 @default.
- W4366606435 hasConcept C85080765 @default.
- W4366606435 hasConcept C92880739 @default.
- W4366606435 hasConceptScore W4366606435C106847996 @default.