Plasma polymerization of (2,2,6,6-tetramethylpiperidin-1-yl)oxyl (TEMPO) yields thin films containing stable nitroxide radicals that have properties analogous to that of nitric oxide (NO) without short lifetimes. This property gives TEMPO films a wide variety of potential applications. Typically, control of the final film chemistry is difficult and the plasma discharge conditions must be tailored to in order to maximize the retention of these nitroxide groups during the polymerization and deposition process. In this study, plasma diagnostics and surface analysis of the deposited films were carried out to determine the optimal plasma conditions for the retention of nitroxide groups. These techniques included energy-resolved mass spectrometry...
Polymerized nanoparticles and nanofibers can be prepared using various processes, such as chemical s...
Published: June 15, 2016We report a systematic study of the plasma polymerization of ethyl α-bromois...
Surfaces are the interfaces between materials and the surrounding environment and, thus, play a sign...
Plasma polymerization of (2,2,6,6-tetramethylpiperidin-1-yl)oxyl (TEMPO) yields thin films containin...
AbstractNitric oxide (NO)‐releasing coatings have promising potential for biomedical applications no...
Improved retention of desirable chemical structures during plasma polymerization requires rational t...
Functionalising surfaces using polymeric thin films is an industrially important field. One techniqu...
Plasma processes are highly versatile methods able to promote the formation of thin films from a vas...
Plasma processes are highly versatile methods able to promote the formation of thin films from a vas...
Functionalising surfaces using polymeric thin films is an industrially important field. One techniqu...
Plasma processes are highly versatile methods able to promote the formation of thin films from a vas...
Pulsed plasmas were investigated as a means of controlling the composition of the surfaces generated...
Chemically functionalized surfaces may be produced via plasma polymerization, however a high degree ...
Molecular interactions are often studied using immobilised organic and biological entities at the su...
Stable organic nitroxide radicals have been shown to exhibit similar cell biology signaling properti...
Polymerized nanoparticles and nanofibers can be prepared using various processes, such as chemical s...
Published: June 15, 2016We report a systematic study of the plasma polymerization of ethyl α-bromois...
Surfaces are the interfaces between materials and the surrounding environment and, thus, play a sign...
Plasma polymerization of (2,2,6,6-tetramethylpiperidin-1-yl)oxyl (TEMPO) yields thin films containin...
AbstractNitric oxide (NO)‐releasing coatings have promising potential for biomedical applications no...
Improved retention of desirable chemical structures during plasma polymerization requires rational t...
Functionalising surfaces using polymeric thin films is an industrially important field. One techniqu...
Plasma processes are highly versatile methods able to promote the formation of thin films from a vas...
Plasma processes are highly versatile methods able to promote the formation of thin films from a vas...
Functionalising surfaces using polymeric thin films is an industrially important field. One techniqu...
Plasma processes are highly versatile methods able to promote the formation of thin films from a vas...
Pulsed plasmas were investigated as a means of controlling the composition of the surfaces generated...
Chemically functionalized surfaces may be produced via plasma polymerization, however a high degree ...
Molecular interactions are often studied using immobilised organic and biological entities at the su...
Stable organic nitroxide radicals have been shown to exhibit similar cell biology signaling properti...
Polymerized nanoparticles and nanofibers can be prepared using various processes, such as chemical s...
Published: June 15, 2016We report a systematic study of the plasma polymerization of ethyl α-bromois...
Surfaces are the interfaces between materials and the surrounding environment and, thus, play a sign...