Matches in SemOpenAlex for { <https://semopenalex.org/work/W2111609002> ?p ?o ?g. }
- W2111609002 endingPage "6982" @default.
- W2111609002 startingPage "6973" @default.
- W2111609002 abstract "Abstract Luminescent, mesoporous, and bioactive europium‐doped hydroxyapatite (HAp:Eu 3+ ) nanofibers and microbelts have been prepared by a combination of sol–gel and electrospinning processes with a cationic surfactant as template. The obtained multifunctional hydroxyapatite nanofibers and microbelts, which have mesoporous structure and red luminescence, were tested as drug carriers by investigating their drug‐storage/release properties with ibuprofen (IBU) as model drug. X‐ray diffraction, scanning electron microscopy (SEM), transmission electron microscopy (TEM), high‐resolution (HR) TEM, FTIR spectroscopy, N 2 adsorption/desorption, photoluminescence (PL) spectra, and UV/Vis spectroscopy were used to characterize the structural, morphological, textural, and optical properties of the resulting samples. The results reveal that the multifunctional hydroxyapatites exhibit irregular mesostructure, and have fiberlike and beltlike morphologies with sizes of several hundred nanometers in width and several millimeters in length. The IBU‐loaded HAp:Eu 3+ system shows red luminescence of Eu 3+ ( 5 D 0 – 7 F 0,1,2 ) under UV irradiation and controlled release of IBU. In addition, the emission intensity of Eu 3+ in the drug carrier system varies with the released amount of IBU, and thus drug release can be easily tracked and monitored by the change in luminescence intensity." @default.
- W2111609002 created "2016-06-24" @default.
- W2111609002 creator A5023492006 @default.
- W2111609002 creator A5025685182 @default.
- W2111609002 creator A5059055667 @default.
- W2111609002 creator A5061058881 @default.
- W2111609002 creator A5062571272 @default.
- W2111609002 creator A5067162181 @default.
- W2111609002 creator A5067921198 @default.
- W2111609002 creator A5078756533 @default.
- W2111609002 creator A5081849116 @default.
- W2111609002 date "2009-07-06" @default.
- W2111609002 modified "2023-10-13" @default.
- W2111609002 title "Multifunctional Hydroxyapatite Nanofibers and Microbelts as Drug Carriers" @default.
- W2111609002 cites W1560694348 @default.
- W2111609002 cites W1637059833 @default.
- W2111609002 cites W1968500717 @default.
- W2111609002 cites W1969310335 @default.
- W2111609002 cites W1977675711 @default.
- W2111609002 cites W1979894853 @default.
- W2111609002 cites W1989007733 @default.
- W2111609002 cites W1990738738 @default.
- W2111609002 cites W1992784274 @default.
- W2111609002 cites W1993038755 @default.
- W2111609002 cites W1996752928 @default.
- W2111609002 cites W1997552417 @default.
- W2111609002 cites W2001971154 @default.
- W2111609002 cites W2002507774 @default.
- W2111609002 cites W2004602103 @default.
- W2111609002 cites W2005019403 @default.
- W2111609002 cites W2011536228 @default.
- W2111609002 cites W2015295070 @default.
- W2111609002 cites W2018300798 @default.
- W2111609002 cites W2023322465 @default.
- W2111609002 cites W2029255146 @default.
- W2111609002 cites W2030627410 @default.
- W2111609002 cites W2031395064 @default.
- W2111609002 cites W2032195777 @default.
- W2111609002 cites W2033544740 @default.
- W2111609002 cites W2034791599 @default.
- W2111609002 cites W2038670482 @default.
- W2111609002 cites W2038958273 @default.
- W2111609002 cites W2046260163 @default.
- W2111609002 cites W2047947540 @default.
- W2111609002 cites W2049128194 @default.
- W2111609002 cites W2049393551 @default.
- W2111609002 cites W2049601450 @default.
- W2111609002 cites W2050204321 @default.
- W2111609002 cites W2056813300 @default.
- W2111609002 cites W2057441531 @default.
- W2111609002 cites W2061398774 @default.
- W2111609002 cites W2062247385 @default.
- W2111609002 cites W2063231055 @default.
- W2111609002 cites W2067529281 @default.
- W2111609002 cites W2077224166 @default.
- W2111609002 cites W2080322890 @default.
- W2111609002 cites W2081581284 @default.
- W2111609002 cites W2082587127 @default.
- W2111609002 cites W2083293431 @default.
- W2111609002 cites W2083345714 @default.
- W2111609002 cites W2084681601 @default.
- W2111609002 cites W2085638225 @default.
- W2111609002 cites W2085788710 @default.
- W2111609002 cites W2086773063 @default.
- W2111609002 cites W2086961179 @default.
- W2111609002 cites W2087166333 @default.
- W2111609002 cites W2090367353 @default.
- W2111609002 cites W2091551472 @default.
- W2111609002 cites W2095407037 @default.
- W2111609002 cites W2100287780 @default.
- W2111609002 cites W2108836062 @default.
- W2111609002 cites W2113100430 @default.
- W2111609002 cites W2127119921 @default.
- W2111609002 cites W2128235529 @default.
- W2111609002 cites W2136833376 @default.
- W2111609002 cites W2143229772 @default.
- W2111609002 cites W2146861266 @default.
- W2111609002 cites W2149183402 @default.
- W2111609002 cites W2950004579 @default.
- W2111609002 cites W2952804848 @default.
- W2111609002 cites W345032726 @default.
- W2111609002 cites W4232994806 @default.
- W2111609002 cites W4256506417 @default.
- W2111609002 cites W70030668 @default.
- W2111609002 doi "https://doi.org/10.1002/chem.200900269" @default.
- W2111609002 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/19496099" @default.
- W2111609002 hasPublicationYear "2009" @default.
- W2111609002 type Work @default.
- W2111609002 sameAs 2111609002 @default.
- W2111609002 citedByCount "82" @default.
- W2111609002 countsByYear W21116090022012 @default.
- W2111609002 countsByYear W21116090022013 @default.
- W2111609002 countsByYear W21116090022014 @default.
- W2111609002 countsByYear W21116090022015 @default.
- W2111609002 countsByYear W21116090022016 @default.
- W2111609002 countsByYear W21116090022017 @default.
- W2111609002 countsByYear W21116090022018 @default.
- W2111609002 countsByYear W21116090022019 @default.