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Study the effect of Ni/ZnO,Cu/ZnO and Co/ZnO presence in reaction layer of platinum electrodeposited electrode for methanol oxidation reaction in low temperature methanol fuel cell system

عنوان مقاله: Study the effect of Ni/ZnO,Cu/ZnO and Co/ZnO presence in reaction layer of platinum electrodeposited electrode for methanol oxidation reaction in low temperature methanol fuel cell system
شناسه ملی مقاله: H2FC04_064
منتشر شده در چهارمین کنفرانس هیدروژن و پیل سوختی در سال 1396
مشخصات نویسندگان مقاله:

Rasol Abdullah Mirzaie - Fuel cell research laboratory,Department of Chemistry, faculty of science, ShahidRajaee Teacher Training University, Tehran, Iran
Azam Anaraki Firooz - Fuel cell research laboratory,Department of Chemistry, faculty of science, ShahidRajaee Teacher Training University, Tehran, Iran
maliheh bakhtiari - Fuel cell research laboratory,Department of Chemistry, faculty of science, ShahidRajaee Teacher Training University, Tehran, Iran

خلاصه مقاله:
Nowadays, methanol fuel cell systems has been attracted research activities to investigate for facilitating methanol oxidation reaction. One of activities is concentrated on improving electro catalysts. ZnO and its derivatives can be used as additive in substrate of electrode. In this work, a simple low temperature hydrothermal method has been used for synthesis of different morphologies of ZnO with 1% mol Ni,Cu and Co nanostructures. The prepared nanostructures was applied to form composition of electrode substrate. Then platinum was electrodeposited by cyclic voltammetry on substrate of electrode. Prepared electrodes was investigated for methanol oxidation reaction in three electrode half-cell system by the electrochemical methods like as linear sweep voltammetry. According our results, at optimum condition by adding Ni doped ZnO in electrode substrate, the current density is increased and a significant reduction in anodic over voltage compared to other electrodeswas observed

کلمات کلیدی:
Methanol fuel cell, Platinum electrodeposited electro catalyst, Methanol oxidation reaction

صفحه اختصاصی مقاله و دریافت فایل کامل: https://civilica.com/doc/642029/