Owing to their amorphous, highly cross-liked nature, most plasma polymers display dielectric properties. This study investigates iodine doping as the means to tune optoelectronic properties of plasma polymer derived from a low-cost, renewable resource, i.e., Melaleuca alternifolia oil. In situ exposure of polyterpenol to vapors of electron-accepting dopant reduced the optical band gap to 1.5 eV and increased the conductivity from 5.05 × 10−8 S/cm to 1.20 × 10−6 S/cm. The increased conductivity may, in part, be attributed to the formation of charge-transfer complexes between the polymer chain and halogen, which act as a cation and anion, respectively. Higher levels of doping notably increased the refractive index, from 1.54 to 1.70 (at 500 n...
Plasma polymerisation is an effective tool for fabrication of thin films from volatile organic monom...
The rapid development of polymers and polymer based materials is leading to a number of promising or...
A non-synthetic polymer material, polyterpenol, was fabricated using a dry polymerization process na...
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...
This study presents the effect of iodine doping on optical and surface properties of polyterpenol th...
After more than twenty years of basic and applied research, the use of nanotechnology in the design ...
This proposed thesis is entitled “Plasma Polymerised Organic Thin Films: A study on the Structural, ...
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...
Organic thin films have myriad of applications in biological interfaces, micro-electromechanical sys...
Polyaniline is a widely studied conducting polymer and is a useful material in its bulk and thin fil...
Plasma polymerisation is an effective tool for fabrication of thin films from volatile organic monom...
The rapid development of polymers and polymer based materials is leading to a number of promising or...
A non-synthetic polymer material, polyterpenol, was fabricated using a dry polymerization process na...
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...
This study presents the effect of iodine doping on optical and surface properties of polyterpenol th...
After more than twenty years of basic and applied research, the use of nanotechnology in the design ...
This proposed thesis is entitled “Plasma Polymerised Organic Thin Films: A study on the Structural, ...
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...
Organic thin films have myriad of applications in biological interfaces, micro-electromechanical sys...
Polyaniline is a widely studied conducting polymer and is a useful material in its bulk and thin fil...
Plasma polymerisation is an effective tool for fabrication of thin films from volatile organic monom...
The rapid development of polymers and polymer based materials is leading to a number of promising or...
A non-synthetic polymer material, polyterpenol, was fabricated using a dry polymerization process na...