This study presents the effect of iodine doping on optical and surface properties of polyterpenol thin films deposited from non-synthetic precursor by means of plasma polymerisation. Spectroscopic ellipsometry studies showed iodine doping reduced the optical band gap from 2.82 eV to 1.50 eV for pristine and doped samples respectively. Higher levels of doping notably reduced the transparency of films, an issue if material is considered for applications that require high transparency. Contact angle studies demonstrated higher hydrophilicity for films deposited at increased doping levels, results confirmed by XPS Spectroscopy and FTIR. Doping had no significant effect on the surface profile or roughness of the film
Plasma polymers such as polyterpenol have been investigated for use as biofunctional coatings, insul...
After more than twenty years of basic and applied research, the use of nanotechnology in the design ...
Radio frequency (R.F.) glow discharge polyterpenol thin films were prepared on silicon wafers and ir...
This study presents the effect of iodine doping on optical and surface properties of polyterpenol th...
Owing to their amorphous, highly cross-liked nature, most plasma polymers display dielectric propert...
Owing to their amorphous, highly cross-liked nature, most plasma polymers display dielectric propert...
The development of novel organic polymer thin films is essential for the advancement of many emergin...
Owing to the structural flexibility, uncomplicated processing and manufacturing capabilities, plasma...
Organic thin films have myriad of applications in biological interfaces, micro-electromechanical sys...
Plasma polymers such as polyterpenol have been investigated for use as biofunctional coatings, insul...
Plasma polymers such as polyterpenol have been investigated for use as biofunctional coatings, insul...
After more than twenty years of basic and applied research, the use of nanotechnology in the design ...
Radio frequency (R.F.) glow discharge polyterpenol thin films were prepared on silicon wafers and ir...
This study presents the effect of iodine doping on optical and surface properties of polyterpenol th...
Owing to their amorphous, highly cross-liked nature, most plasma polymers display dielectric propert...
Owing to their amorphous, highly cross-liked nature, most plasma polymers display dielectric propert...
The development of novel organic polymer thin films is essential for the advancement of many emergin...
Owing to the structural flexibility, uncomplicated processing and manufacturing capabilities, plasma...
Organic thin films have myriad of applications in biological interfaces, micro-electromechanical sys...
Plasma polymers such as polyterpenol have been investigated for use as biofunctional coatings, insul...
Plasma polymers such as polyterpenol have been investigated for use as biofunctional coatings, insul...
After more than twenty years of basic and applied research, the use of nanotechnology in the design ...
Radio frequency (R.F.) glow discharge polyterpenol thin films were prepared on silicon wafers and ir...