The current work investigated the effects of oxide- and nitride-based silicon nanoparticles on the water absorption and dielectric breakdown characteristics of low density polyethylene (LDPE). The results showed that hydrophobic LDPE, when added with silicon dioxide nanoparticles, became prone to water absorption. In contrast, LDPE, when added with silicon nitride nanoparticles, attracted much less water. These water absorption behaviors consequently affected the breakdown characteristics of the materials, where LDPE with silicon dioxide nanoparticles showed lower breakdown strength than LDPE with silicon nitride nanoparticles. These differences are discussed based on the surface chemistries of the nanoparticles
The dielectric properties of epoxy resin were studied as a function of hydration by dielectric spect...
The current work reviews the importance of engineering the interface between nanofillers and polymer...
This dataset is intended for use in conjunction with the publication; On the Effect of Functional...
The current work investigated the effects of oxide- and nitride-based silicon nanoparticles on the w...
In developing future electrical networks, one of the important aspects to transfer efficient high po...
A series of nanoparticles was prepared by functionalizing a commercial nanosilica with alkylsilanes ...
A series of polyethylene-based nanocomposites was prepared, utilizing silicon nitride or silicon dio...
Good breakdown strength is an important feature for the selection of dielectric materials, especiall...
A series of polyethylene-based nanocomposites was prepared, utilizing silicon nitride or silicon dio...
The use of nanocomposites as dielectric materials is expected to lead to improved electrical perform...
The effects of functionalizer chain length and water content were explored in a series of polyethyle...
Four polyethylene based nano-composites containing either silica or silicon nitride were prepared. A...
This dataset is intended to be used in conjunction with the journal publication; "The effect...
Silicon nitride (Si3N4) has been utilized as a nanofiller in polymeric insulation due to its good ch...
The current work reviews the importance of engineering the interface between nanofillers and polymer...
The dielectric properties of epoxy resin were studied as a function of hydration by dielectric spect...
The current work reviews the importance of engineering the interface between nanofillers and polymer...
This dataset is intended for use in conjunction with the publication; On the Effect of Functional...
The current work investigated the effects of oxide- and nitride-based silicon nanoparticles on the w...
In developing future electrical networks, one of the important aspects to transfer efficient high po...
A series of nanoparticles was prepared by functionalizing a commercial nanosilica with alkylsilanes ...
A series of polyethylene-based nanocomposites was prepared, utilizing silicon nitride or silicon dio...
Good breakdown strength is an important feature for the selection of dielectric materials, especiall...
A series of polyethylene-based nanocomposites was prepared, utilizing silicon nitride or silicon dio...
The use of nanocomposites as dielectric materials is expected to lead to improved electrical perform...
The effects of functionalizer chain length and water content were explored in a series of polyethyle...
Four polyethylene based nano-composites containing either silica or silicon nitride were prepared. A...
This dataset is intended to be used in conjunction with the journal publication; "The effect...
Silicon nitride (Si3N4) has been utilized as a nanofiller in polymeric insulation due to its good ch...
The current work reviews the importance of engineering the interface between nanofillers and polymer...
The dielectric properties of epoxy resin were studied as a function of hydration by dielectric spect...
The current work reviews the importance of engineering the interface between nanofillers and polymer...
This dataset is intended for use in conjunction with the publication; On the Effect of Functional...