While topology effects by cyclic polymers in solution and melts are well-known, their translation into the interfacial properties of polymer "brushes" provides new opportunities to impart enhanced surface lubricity and biopassivity to inorganic surfaces, above and beyond that expected for linear analogues of identical composition. The impact of polymer topology on the nanotribological and protein-resistance properties of polymer brushes is revealed by studying linear and cyclic poly(2-ethyl-2-oxazoline) (PEOXA) grafts presenting a broad range of surface densities and while shearing them alternatively against an identical brush or a bare inorganic surface. The intramolecular constraints introduced by the cyclization provide a valuable increm...
Surface modification by polymer grafting has represented a revolution in material science, enabling ...
The application of distinctive polymer topologies, beyond the simple linear chain, to yield cyclic a...
Polymer brushes have been widely applied for the reduction of both friction and non‐specific protein...
While topology effects by cyclic polymers in solution and melts are well-known, their translation in...
While topology effects by cyclic polymers in solution and melts are well-known, their translation in...
While topology effects by cyclic polymers in solution and melts are well-known, their translation in...
While topology effects by cyclic polymers in solution and melts are well-known, their translation in...
While topology effects by cyclic polymers in solution and melts are well-known, their translation in...
While topology effects by cyclic polymers in solution and melts are well-known, their translation in...
While topology effects by cyclic polymers in solution and melts are well-known, their translation in...
The interfacial physicochemical properties of “brushes” constituted by cyclic polymers strongly depe...
The interfacial physicochemical properties of “brushes” constituted by cyclic polymers strongly depe...
Grafting synthetic polymers to inorganic and organic surfaces to yield polymer brushes has represent...
Grafting synthetic polymers to inorganic and organic surfaces to yield polymer brushes has represent...
The application of distinctive polymer topologies, beyond linearity, to yield cyclic and “loops”-for...
Surface modification by polymer grafting has represented a revolution in material science, enabling ...
The application of distinctive polymer topologies, beyond the simple linear chain, to yield cyclic a...
Polymer brushes have been widely applied for the reduction of both friction and non‐specific protein...
While topology effects by cyclic polymers in solution and melts are well-known, their translation in...
While topology effects by cyclic polymers in solution and melts are well-known, their translation in...
While topology effects by cyclic polymers in solution and melts are well-known, their translation in...
While topology effects by cyclic polymers in solution and melts are well-known, their translation in...
While topology effects by cyclic polymers in solution and melts are well-known, their translation in...
While topology effects by cyclic polymers in solution and melts are well-known, their translation in...
While topology effects by cyclic polymers in solution and melts are well-known, their translation in...
The interfacial physicochemical properties of “brushes” constituted by cyclic polymers strongly depe...
The interfacial physicochemical properties of “brushes” constituted by cyclic polymers strongly depe...
Grafting synthetic polymers to inorganic and organic surfaces to yield polymer brushes has represent...
Grafting synthetic polymers to inorganic and organic surfaces to yield polymer brushes has represent...
The application of distinctive polymer topologies, beyond linearity, to yield cyclic and “loops”-for...
Surface modification by polymer grafting has represented a revolution in material science, enabling ...
The application of distinctive polymer topologies, beyond the simple linear chain, to yield cyclic a...
Polymer brushes have been widely applied for the reduction of both friction and non‐specific protein...