Matches in SemOpenAlex for { <https://semopenalex.org/work/W2053304852> ?p ?o ?g. }
- W2053304852 endingPage "1779" @default.
- W2053304852 startingPage "1766" @default.
- W2053304852 abstract "The objective of the study was to assess and compare the interaction and distribution of water within microcrystalline cellulose (MCC) and chitosan by differential scanning calorimetry (DSC) and dynamic vapor sorption analysis. The amounts of nonfreezing and freezing water in hydrated samples were determined from melting endotherms obtained by DSC. After accounting for the percent crystallinity of MCC and chitosan, no statistically significant difference was observed in their ability to bind water molecules per repeating unit at the minimum water content at which freezing water is evident. Exposure of chitosan to water for 30 min was sufficient to achieve equilibration at 61% w/w actual water content. The moisture sorption profiles were analyzed according to the GAB and Young and Nelson equations. The adsorbed monolayer, externally adsorbed moisture, and internally absorbed moisture were not statistically different for MCC and chitosan after accounting for the amorphous content of the polymers. These studies suggest that chitosan can act as a “molecular sponge,” and thus aid in the production of beads by extrusion and spheronization. © 2004 Wiley‐Liss, Inc. and the American Pharmacists Association J Pharm Sci 93: 1766–1779, 2004" @default.
- W2053304852 created "2016-06-24" @default.
- W2053304852 creator A5005543512 @default.
- W2053304852 creator A5078129340 @default.
- W2053304852 creator A5081979419 @default.
- W2053304852 creator A5082926880 @default.
- W2053304852 date "2004-07-01" @default.
- W2053304852 modified "2023-10-16" @default.
- W2053304852 title "Water Distribution Studies Within Microcrystalline Cellulose and Chitosan using Differential Scanning Calorimetry and Dynamic Vapor Sorption Analysis" @default.
- W2053304852 cites W1505631108 @default.
- W2053304852 cites W1975391899 @default.
- W2053304852 cites W1976500964 @default.
- W2053304852 cites W1980674204 @default.
- W2053304852 cites W1988955292 @default.
- W2053304852 cites W1989599554 @default.
- W2053304852 cites W1990381797 @default.
- W2053304852 cites W2001353838 @default.
- W2053304852 cites W2002495991 @default.
- W2053304852 cites W2003342123 @default.
- W2053304852 cites W2014204862 @default.
- W2053304852 cites W2016356180 @default.
- W2053304852 cites W2020260586 @default.
- W2053304852 cites W2027357486 @default.
- W2053304852 cites W2029159402 @default.
- W2053304852 cites W2030051676 @default.
- W2053304852 cites W2048827995 @default.
- W2053304852 cites W2049270647 @default.
- W2053304852 cites W2054484370 @default.
- W2053304852 cites W2064345165 @default.
- W2053304852 cites W2066191199 @default.
- W2053304852 cites W2069434663 @default.
- W2053304852 cites W2082258056 @default.
- W2053304852 cites W2083444249 @default.
- W2053304852 cites W2088550823 @default.
- W2053304852 cites W2092453049 @default.
- W2053304852 cites W2093032714 @default.
- W2053304852 cites W2095877922 @default.
- W2053304852 cites W2115513540 @default.
- W2053304852 cites W2134168039 @default.
- W2053304852 cites W2152335094 @default.
- W2053304852 cites W2155460495 @default.
- W2053304852 cites W2156112012 @default.
- W2053304852 cites W2318528752 @default.
- W2053304852 cites W2335248207 @default.
- W2053304852 cites W2603804158 @default.
- W2053304852 cites W353722211 @default.
- W2053304852 cites W4249066488 @default.
- W2053304852 cites W72627025 @default.
- W2053304852 doi "https://doi.org/10.1002/jps.20085" @default.
- W2053304852 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/15176065" @default.
- W2053304852 hasPublicationYear "2004" @default.
- W2053304852 type Work @default.
- W2053304852 sameAs 2053304852 @default.
- W2053304852 citedByCount "72" @default.
- W2053304852 countsByYear W20533048522012 @default.
- W2053304852 countsByYear W20533048522013 @default.
- W2053304852 countsByYear W20533048522014 @default.
- W2053304852 countsByYear W20533048522015 @default.
- W2053304852 countsByYear W20533048522016 @default.
- W2053304852 countsByYear W20533048522017 @default.
- W2053304852 countsByYear W20533048522018 @default.
- W2053304852 countsByYear W20533048522019 @default.
- W2053304852 countsByYear W20533048522022 @default.
- W2053304852 countsByYear W20533048522023 @default.
- W2053304852 crossrefType "journal-article" @default.
- W2053304852 hasAuthorship W2053304852A5005543512 @default.
- W2053304852 hasAuthorship W2053304852A5078129340 @default.
- W2053304852 hasAuthorship W2053304852A5081979419 @default.
- W2053304852 hasAuthorship W2053304852A5082926880 @default.
- W2053304852 hasConcept C121332964 @default.
- W2053304852 hasConcept C127413603 @default.
- W2053304852 hasConcept C147534773 @default.
- W2053304852 hasConcept C150394285 @default.
- W2053304852 hasConcept C159985019 @default.
- W2053304852 hasConcept C176864760 @default.
- W2053304852 hasConcept C178790620 @default.
- W2053304852 hasConcept C185592680 @default.
- W2053304852 hasConcept C187320778 @default.
- W2053304852 hasConcept C188027245 @default.
- W2053304852 hasConcept C192562407 @default.
- W2053304852 hasConcept C201370411 @default.
- W2053304852 hasConcept C24939127 @default.
- W2053304852 hasConcept C2778958987 @default.
- W2053304852 hasConcept C2779251873 @default.
- W2053304852 hasConcept C2779351475 @default.
- W2053304852 hasConcept C2779732960 @default.
- W2053304852 hasConcept C39519442 @default.
- W2053304852 hasConcept C42360764 @default.
- W2053304852 hasConcept C46275449 @default.
- W2053304852 hasConcept C521977710 @default.
- W2053304852 hasConcept C58445606 @default.
- W2053304852 hasConcept C8010536 @default.
- W2053304852 hasConcept C97355855 @default.
- W2053304852 hasConceptScore W2053304852C121332964 @default.
- W2053304852 hasConceptScore W2053304852C127413603 @default.
- W2053304852 hasConceptScore W2053304852C147534773 @default.
- W2053304852 hasConceptScore W2053304852C150394285 @default.
- W2053304852 hasConceptScore W2053304852C159985019 @default.