We compare the photoemission and electron energy loss spectra of crystalline poly(vinylidene-fluoride with trifluoroethylene: 70%: 30%), P(VDF–TrFE), films, fabricated by the Langmuir–Blodgett technique and annealed in vacuum, with in situ thermally evaporated films of poly(vinylidene-fluoride) (PVDF) in vacuum. The electronic structure and vibrational modes of the short chain PVDF films compare well with the crystalline P(VDF–TrFE) films indicating that vacuum annealed films prepared ex situ are free of significant surface contamination once vacuum annealed. The electronic structure for the short chain PVDF films exhibits, however, different temperature dependence than the crystalline P(VDF–TrFE) films. PACS: 68.47.Mn; 71.20.Rv; 63.22.+m; ...
Organic ferroelectric materials combine the versatility and customizability afforded by organic synt...
The interface between aluminum and crystalline copolymer thin film of vinylidene fluoride (70%) with...
We report the studies of the molecular conformation and chain orientations through characterization ...
We compare the photoemission and electron energy loss spectra of crystalline poly(vinylidene-fluorid...
The photodegradation mechanism due to synchrotron radiation exposure of crystalline poly[vinylidene ...
The electronic structure and band symmetries of the ferroelectric phase of poly (vinylidene fluoride...
The apparent molecular density of states from combined photoemission and inverse photoemission spect...
Organic ferroelectric materials combine the versatility and customizability afforded by organic synt...
The structures of nanocrystals consisting of 70% vinylidene fluoride and 30% trifluoroethylene made ...
Organic thin films have numerous advantages over inorganics in device processing and price. The larg...
Surface structures and a surface structure phase transition are identified that are distinct from th...
The electronic structure and band symmetries of the ferroelectric phase of poly (vinylidene fluorid...
The interface between aluminum and crystalline copolymer thin film of vinylidene fluoride (70%) with...
PVDF thin films prepared under standard processing conditions have a cloudy appearance and are notor...
Organic ferroelectric materials combine the versatility and customizability afforded by organic synt...
The interface between aluminum and crystalline copolymer thin film of vinylidene fluoride (70%) with...
We report the studies of the molecular conformation and chain orientations through characterization ...
We compare the photoemission and electron energy loss spectra of crystalline poly(vinylidene-fluorid...
The photodegradation mechanism due to synchrotron radiation exposure of crystalline poly[vinylidene ...
The electronic structure and band symmetries of the ferroelectric phase of poly (vinylidene fluoride...
The apparent molecular density of states from combined photoemission and inverse photoemission spect...
Organic ferroelectric materials combine the versatility and customizability afforded by organic synt...
The structures of nanocrystals consisting of 70% vinylidene fluoride and 30% trifluoroethylene made ...
Organic thin films have numerous advantages over inorganics in device processing and price. The larg...
Surface structures and a surface structure phase transition are identified that are distinct from th...
The electronic structure and band symmetries of the ferroelectric phase of poly (vinylidene fluorid...
The interface between aluminum and crystalline copolymer thin film of vinylidene fluoride (70%) with...
PVDF thin films prepared under standard processing conditions have a cloudy appearance and are notor...
Organic ferroelectric materials combine the versatility and customizability afforded by organic synt...
The interface between aluminum and crystalline copolymer thin film of vinylidene fluoride (70%) with...
We report the studies of the molecular conformation and chain orientations through characterization ...