AbstractPlatinum (Pt) is the most efficient and common cathode catalyst that is being applied in fuel cell technology, especially in microbial fuel cells (MFCs). However, its high price makes its use uneconomical in MFCs. Even though there are some other types of new catalysts, their performance could not compete with Pt. This is the main reason why scientists spend all their efforts to decrease the amount of Pt by making some composite of Pt for their use in MFCs thus making it viable and more economical. In this study, carbon nanotube-platinum (CNT/Pt) nanocomposite has been fabricated as a novel cathode catalyst in MFCs and its performance was compared with platinum in MFCs system. The CNT/Pt was synthesized by using the in situ method, ...
Polymer electrolyte based fuel cells (PEFCs) are always in the forefront of fuel cell revolution. Re...
A novel electrochemical method to generate nm-scale bubbles at the tips of CNTs can temporarily bloc...
Recently one-dimensonal (1-D) Pt nanostructures have shown greatly enhanced intrinsic oxygen reducti...
AbstractPlatinum (Pt) is the most efficient and common cathode catalyst that is being applied in fue...
In this paper, we reported the fabrication, characterization, and application of carbon nanotube (CN...
High performance in PEM fuel cells has been achieved using purified CNTs as catalyst support. Pt/CNT...
Highly dispersed platinum (Pt) nanoparticles / multiwalled carbon nanotubes (MWCNTs) on bacterial ce...
The inescapable growth of heterotrophic aerobic bacteria on the surface of air cathodes is an import...
abstract: With a recent shift to a more environmentally conscious society, low-carbon and non-carbon...
Catalyst support materials exhibit great influence on the performance and durability of proton excha...
Global interest in renewable power sources to cut back the current fuel emission levels and to solv...
The enhanced performance of carbon nanotubes (CNTs) over carbon black as a catalyst support and the ...
Carbon monoxide (CO) is extremely poisonous to the Pt catalyst resulting in the available reaction s...
Direct methanol fuel cells (DMFC) are great candidates for portable power source applications. Howev...
Magister Scientiae - MScThe particles of the Pt metal were well dispersed on carbon nanotubes when E...
Polymer electrolyte based fuel cells (PEFCs) are always in the forefront of fuel cell revolution. Re...
A novel electrochemical method to generate nm-scale bubbles at the tips of CNTs can temporarily bloc...
Recently one-dimensonal (1-D) Pt nanostructures have shown greatly enhanced intrinsic oxygen reducti...
AbstractPlatinum (Pt) is the most efficient and common cathode catalyst that is being applied in fue...
In this paper, we reported the fabrication, characterization, and application of carbon nanotube (CN...
High performance in PEM fuel cells has been achieved using purified CNTs as catalyst support. Pt/CNT...
Highly dispersed platinum (Pt) nanoparticles / multiwalled carbon nanotubes (MWCNTs) on bacterial ce...
The inescapable growth of heterotrophic aerobic bacteria on the surface of air cathodes is an import...
abstract: With a recent shift to a more environmentally conscious society, low-carbon and non-carbon...
Catalyst support materials exhibit great influence on the performance and durability of proton excha...
Global interest in renewable power sources to cut back the current fuel emission levels and to solv...
The enhanced performance of carbon nanotubes (CNTs) over carbon black as a catalyst support and the ...
Carbon monoxide (CO) is extremely poisonous to the Pt catalyst resulting in the available reaction s...
Direct methanol fuel cells (DMFC) are great candidates for portable power source applications. Howev...
Magister Scientiae - MScThe particles of the Pt metal were well dispersed on carbon nanotubes when E...
Polymer electrolyte based fuel cells (PEFCs) are always in the forefront of fuel cell revolution. Re...
A novel electrochemical method to generate nm-scale bubbles at the tips of CNTs can temporarily bloc...
Recently one-dimensonal (1-D) Pt nanostructures have shown greatly enhanced intrinsic oxygen reducti...