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- Q91031078 description "article scientifique publié en 2019" @default.
- Q91031078 description "artículu científicu espublizáu n'ochobre de 2019" @default.
- Q91031078 description "scientific article published on 31 October 2019" @default.
- Q91031078 description "wetenschappelijk artikel" @default.
- Q91031078 description "наукова стаття, опублікована 31 жовтня 2019" @default.
- Q91031078 name "Thermodynamic analysis of multivalent binding of functionalized nanoparticles to membrane surface reveals the importance of membrane entropy and nanoparticle entropy in adhesion of flexible nanoparticles" @default.
- Q91031078 name "Thermodynamic analysis of multivalent binding of functionalized nanoparticles to membrane surface reveals the importance of membrane entropy and nanoparticle entropy in adhesion of flexible nanoparticles" @default.
- Q91031078 type Item @default.
- Q91031078 label "Thermodynamic analysis of multivalent binding of functionalized nanoparticles to membrane surface reveals the importance of membrane entropy and nanoparticle entropy in adhesion of flexible nanoparticles" @default.
- Q91031078 label "Thermodynamic analysis of multivalent binding of functionalized nanoparticles to membrane surface reveals the importance of membrane entropy and nanoparticle entropy in adhesion of flexible nanoparticles" @default.
- Q91031078 prefLabel "Thermodynamic analysis of multivalent binding of functionalized nanoparticles to membrane surface reveals the importance of membrane entropy and nanoparticle entropy in adhesion of flexible nanoparticles" @default.
- Q91031078 prefLabel "Thermodynamic analysis of multivalent binding of functionalized nanoparticles to membrane surface reveals the importance of membrane entropy and nanoparticle entropy in adhesion of flexible nanoparticles" @default.
- Q91031078 P1433 Q91031078-D41FA7D8-CD61-4255-AA4D-3D302F582FA6 @default.
- Q91031078 P1476 Q91031078-A92AD568-E5A7-48BA-9B8A-7BEE6550C01B @default.
- Q91031078 P2093 Q91031078-854FCA24-593D-4D9B-AA6C-3746EFEFB2CE @default.
- Q91031078 P2860 Q91031078-1C37CA94-B423-45CC-9056-B3677E702DC1 @default.
- Q91031078 P304 Q91031078-F527B6F3-21F7-4966-8EBB-48635A6ABEF2 @default.
- Q91031078 P31 Q91031078-2BABC839-0D1D-43BC-98AD-A49C83CB9C26 @default.
- Q91031078 P356 Q91031078-86A5DD79-B158-4A4C-8980-E1D5788EAE53 @default.
- Q91031078 P433 Q91031078-DB58E7DF-C4FB-435E-BEF8-5F3853A135F4 @default.
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- Q91031078 P50 Q91031078-0FB02AA1-EC39-473C-9479-150984BFD756 @default.
- Q91031078 P50 Q91031078-83383E9F-D4B7-4A45-AF2F-F2C94B36B28D @default.
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- Q91031078 P698 Q91031078-35268181-0E18-4739-87D8-154EE80C760A @default.
- Q91031078 P921 Q91031078-F98CB864-80CD-40D3-9E56-EC287A564D41 @default.
- Q91031078 P356 C9SM01653H @default.
- Q91031078 P698 31670338 @default.
- Q91031078 P1433 Q3488877 @default.
- Q91031078 P1476 "Thermodynamic analysis of multivalent binding of functionalized nanoparticles to membrane surface reveals the importance of membrane entropy and nanoparticle entropy in adhesion of flexible nanoparticles" @default.
- Q91031078 P2093 "Ryan P Bradley" @default.
- Q91031078 P2860 Q17278583 @default.
- Q91031078 P304 "9271-9286" @default.
- Q91031078 P31 Q13442814 @default.
- Q91031078 P356 "10.1039/C9SM01653H" @default.
- Q91031078 P433 "45" @default.
- Q91031078 P478 "15" @default.
- Q91031078 P50 Q88769760 @default.
- Q91031078 P50 Q91031075 @default.
- Q91031078 P577 "2019-10-31T00:00:00Z" @default.
- Q91031078 P698 "31670338" @default.
- Q91031078 P921 Q61231 @default.