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The 9th International Energy Conference
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Showing 2 results for Nemati

A Khanfekr, M Hossaini, Z Nemati, K Arzani,
Volume 12, Issue 1 (Spring 2009)
Abstract

(La,Ce)(Pd,Mn,Fe,Co)O3- Perovskite catalyst was prepared by the citrate route and deposited on ceramic monoliths via dip coating procedure by compressor and vacuum method. The catalyst was applied on Rd car with XU7 motors model and the amount of emission was monitored with vehicle emission test systems in Sapco Company after 10/000 and 20/000 Km . The results indicate low emission in catalyst with vacuum method and were compared with the imported catalyst with noble metals such as Palladium, Platinum and Rhodium by Iran Khodro Company based on the Euro III standards. The catalysts were characterized by specific surface area measurements, scanning electron microscopy, X-ray diffraction, line scan and map. In the results indicated in the home made sample, the amount of carbon monoxide, nitrogen oxides and hydrocarbons were lower than imported catalyst with Iran Khodro company with nobel metals . The illustration shows Nano Particles size on coat. The microstructure evaluation showed that the improved properties can be related to the existence of nano particles on coating..

Mahdi Malekshahi Byranvand, Mohammad Hossein Bazargan, Ali Nemati Kharat,
Volume 13, Issue 4 (Winter 2011)
Abstract

Flexible Dye-Sensitized Solar Cells (DSSCs) are new generation of photovoltaic solar cells that imitate the naturalphotosynthesis process. DSSCs have been extensively studied in recent years because they provide high-efficient energy conversion, low cost production and environmentally friendly advantages. These cells work by absorbing photons on an inexpensive thin-film composed of dye molecules attached to a titanium oxide layer on a plastic substrate .This research is focused on fabrication technology of flexible dye sensitized solar cell on plastic substrate. The solar energy conversion efficiencies (h) forfabricated cells ( 25×25 millimeter) operated with graphite, gold and platinum counter electrode were about 0.363%, 0.551% and 0.816% respectively under 1000 W/m2 illumination.

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نشریه انرژی ایران Iranian Journal of Energy
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