Matches in SemOpenAlex for { <https://semopenalex.org/work/W2036699371> ?p ?o ?g. }
- W2036699371 endingPage "1246" @default.
- W2036699371 startingPage "1240" @default.
- W2036699371 abstract "Aqueous dispersions of highly stable, redispersible silver nanoparticles (Ag NPs) were synthesized using gamma radiolysis with gum acacia as a protecting agent. The formation of nanosized silver was confirmed by its characteristic surface plasmon absorption peak at around 405 nm in UV–vis spectra. The size of the silver nanoparticles can be tuned by controlling the radiation dose, ratio of gum acacia to silver ions and also the ionic strength of the medium. Dynamic light scattering (DLS) measurement of the as-synthesized nanoparticles indicated the size less than 3 nm at higher dose of radiation and this also corroborated the size measurement from the width of the corresponding X-ray diffraction (XRD) peak. The face centered cubic (fcc) crystallinity of the nanoparticles was evident from XRD and high resolution transmission electron microscopic (HRTEM) measurements. Fourier transform infra-red (FTIR) spectroscopic data indicate a bonding of Ag NPs with COO � group of acacia through bridging" @default.
- W2036699371 created "2016-06-24" @default.
- W2036699371 creator A5006167110 @default.
- W2036699371 creator A5008178561 @default.
- W2036699371 creator A5047040773 @default.
- W2036699371 creator A5052729437 @default.
- W2036699371 creator A5053529783 @default.
- W2036699371 creator A5070437455 @default.
- W2036699371 date "2010-12-01" @default.
- W2036699371 modified "2023-09-26" @default.
- W2036699371 title "Gamma irradiation route to synthesis of highly re-dispersible natural polymer capped silver nanoparticles" @default.
- W2036699371 cites W1966576707 @default.
- W2036699371 cites W1970608760 @default.
- W2036699371 cites W1974025248 @default.
- W2036699371 cites W1975574581 @default.
- W2036699371 cites W1978749696 @default.
- W2036699371 cites W1981074944 @default.
- W2036699371 cites W1986737707 @default.
- W2036699371 cites W1987363163 @default.
- W2036699371 cites W1989836987 @default.
- W2036699371 cites W1989860007 @default.
- W2036699371 cites W1990443697 @default.
- W2036699371 cites W1991674587 @default.
- W2036699371 cites W1993207303 @default.
- W2036699371 cites W1995872224 @default.
- W2036699371 cites W1996411910 @default.
- W2036699371 cites W2001863677 @default.
- W2036699371 cites W2004560833 @default.
- W2036699371 cites W2005022133 @default.
- W2036699371 cites W2005126399 @default.
- W2036699371 cites W2013101205 @default.
- W2036699371 cites W2013556864 @default.
- W2036699371 cites W2016316821 @default.
- W2036699371 cites W2017513004 @default.
- W2036699371 cites W2017673275 @default.
- W2036699371 cites W2024002033 @default.
- W2036699371 cites W2024242353 @default.
- W2036699371 cites W2025256735 @default.
- W2036699371 cites W2030805600 @default.
- W2036699371 cites W2031056624 @default.
- W2036699371 cites W2035591169 @default.
- W2036699371 cites W2036468025 @default.
- W2036699371 cites W2042871087 @default.
- W2036699371 cites W2044343420 @default.
- W2036699371 cites W2056507804 @default.
- W2036699371 cites W2058840004 @default.
- W2036699371 cites W2059497049 @default.
- W2036699371 cites W2060488396 @default.
- W2036699371 cites W2064676400 @default.
- W2036699371 cites W2065190326 @default.
- W2036699371 cites W2070448623 @default.
- W2036699371 cites W2071442330 @default.
- W2036699371 cites W2078128999 @default.
- W2036699371 cites W2078316130 @default.
- W2036699371 cites W2082373434 @default.
- W2036699371 cites W2088410098 @default.
- W2036699371 cites W2112165279 @default.
- W2036699371 cites W2118676544 @default.
- W2036699371 cites W2131194626 @default.
- W2036699371 cites W2133527418 @default.
- W2036699371 cites W2142919168 @default.
- W2036699371 cites W2155977347 @default.
- W2036699371 cites W2160086456 @default.
- W2036699371 cites W2163151727 @default.
- W2036699371 cites W245644776 @default.
- W2036699371 cites W2949383832 @default.
- W2036699371 cites W4211124225 @default.
- W2036699371 cites W4211134742 @default.
- W2036699371 doi "https://doi.org/10.1016/j.radphyschem.2010.07.004" @default.
- W2036699371 hasPublicationYear "2010" @default.
- W2036699371 type Work @default.
- W2036699371 sameAs 2036699371 @default.
- W2036699371 citedByCount "135" @default.
- W2036699371 countsByYear W20366993712012 @default.
- W2036699371 countsByYear W20366993712013 @default.
- W2036699371 countsByYear W20366993712014 @default.
- W2036699371 countsByYear W20366993712015 @default.
- W2036699371 countsByYear W20366993712016 @default.
- W2036699371 countsByYear W20366993712017 @default.
- W2036699371 countsByYear W20366993712018 @default.
- W2036699371 countsByYear W20366993712019 @default.
- W2036699371 countsByYear W20366993712020 @default.
- W2036699371 countsByYear W20366993712021 @default.
- W2036699371 countsByYear W20366993712022 @default.
- W2036699371 countsByYear W20366993712023 @default.
- W2036699371 crossrefType "journal-article" @default.
- W2036699371 hasAuthorship W2036699371A5006167110 @default.
- W2036699371 hasAuthorship W2036699371A5008178561 @default.
- W2036699371 hasAuthorship W2036699371A5047040773 @default.
- W2036699371 hasAuthorship W2036699371A5052729437 @default.
- W2036699371 hasAuthorship W2036699371A5053529783 @default.
- W2036699371 hasAuthorship W2036699371A5070437455 @default.
- W2036699371 hasConcept C111337013 @default.
- W2036699371 hasConcept C121332964 @default.
- W2036699371 hasConcept C127413603 @default.
- W2036699371 hasConcept C13965031 @default.
- W2036699371 hasConcept C155672457 @default.
- W2036699371 hasConcept C171250308 @default.