Organic plasma polymers are currently attracting significant interest for their potential in the areas of flexible optoelectronics and biotechnology. Thin films of plasma-polymerized polyterpenol fabricated under varied deposition conditions were studied using nanoindentation and nanoscratch analyses. Coatings fabricated at higher deposition power were characterized by improved hardness, from 0.33 GPa for 10 W to 0.51 GPa for 100 W at 500-μN load, and enhanced wear resistance. The elastic recovery was estimated to be between 0.1 and 0.14. Coatings deposited at higher RF powers also showed less mechanical deformation and improved quality of adhesion. The average (R a) and root mean square (R q) surface roughness parameters decreased, from 0....
Radio frequency plasma enhanced chemical vapor deposition is currently used to fabricate a broad ran...
This study aimed to produce graphitic-polymer nanocomposite thin films via the swift heavy ion irrad...
In the fields of organic electronics and biotechnology, applications for organic polymer thin films ...
Organic plasma polymers are currently attracting significant interest for their potential in the are...
Organic thin films have myriad of applications in biological interfaces, micro-electromechanical sys...
After more than twenty years of basic and applied research, the use of nanotechnology in the design ...
Owing to the structural flexibility, uncomplicated processing and manufacturing capabilities, plasma...
The development of novel organic polymer thin films is essential for the advancement of many emergin...
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...
Polymers derived from natural, minimally-processed materials have recently emerged as a more sustain...
Radio frequency plasma enhanced chemical vapor deposition is currently used to fabricate a broad ran...
This study aimed to produce graphitic-polymer nanocomposite thin films via the swift heavy ion irrad...
In the fields of organic electronics and biotechnology, applications for organic polymer thin films ...
Organic plasma polymers are currently attracting significant interest for their potential in the are...
Organic thin films have myriad of applications in biological interfaces, micro-electromechanical sys...
After more than twenty years of basic and applied research, the use of nanotechnology in the design ...
Owing to the structural flexibility, uncomplicated processing and manufacturing capabilities, plasma...
The development of novel organic polymer thin films is essential for the advancement of many emergin...
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...
Polymers derived from natural, minimally-processed materials have recently emerged as a more sustain...
Radio frequency plasma enhanced chemical vapor deposition is currently used to fabricate a broad ran...
This study aimed to produce graphitic-polymer nanocomposite thin films via the swift heavy ion irrad...
In the fields of organic electronics and biotechnology, applications for organic polymer thin films ...