Synthesis and electrocatalytic activity towards oxygen reduction reaction of gold-nanostars
The oxygen reduction reaction (ORR) is a characteristic reaction which determines the performance of fuel cells which convert a chemical energy into an electrical energy. Aims of this study are to synthesize Au-based nanostars (AuNSs) and determine their preliminary electro-catalytic activities towa...
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Mongolian Academy of Sciences
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doaj-7b0c96d11b9240bcb2ac16f3eeea2e722020-11-24T22:40:40ZengMongolian Academy of SciencesMongolian Journal of Chemistry2226-67392414-00822018-02-011844364010.5564/mjc.v18i44.935888Synthesis and electrocatalytic activity towards oxygen reduction reaction of gold-nanostarsOyunbileg G0Batnyagt G1Enkhsaruul B2T Takeguchi3School of Arts and Sciences, National University of Mongolia, Ulaanbaatar 210646, MongoliaIwate University, 4-3-5 Ueda, Morioka, Iwate 020-8551, JapanSchool of Arts and Sciences, National University of Mongolia, Ulaanbaatar 210646, MongoliaIwate University, 4-3-5 Ueda, Morioka, Iwate 020-8551, JapanThe oxygen reduction reaction (ORR) is a characteristic reaction which determines the performance of fuel cells which convert a chemical energy into an electrical energy. Aims of this study are to synthesize Au-based nanostars (AuNSs) and determine their preliminary electro-catalytic activities towards ORR by a rotating-disk electrode method in alkaline electrolyte. The images obtained from a scanning electron microscope (SEM) and a transmission electron microscope (TEM) analyses confirm the formation of the star-shaped nanoparticles. Among the investigated nanostar catalysts, an AuNS5 with smaller size and a few branches showed the higher electrocatalytic activity towards ORR than other catalysts with a bigger size. In addition, the electron numbers transferred for all the catalysts are approximately two. The present study results infer that the size of the Au-based nanostars may influence greatly on their catalytic activity. The present study results show that the further improvement is needed for Au-based nanostar catalysts towards the ORR reaction.https://www.mongoliajol.info/index.php/MJC/article/view/935fuel celloxygen reduction reactiongold nanostars |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Oyunbileg G Batnyagt G Enkhsaruul B T Takeguchi |
spellingShingle |
Oyunbileg G Batnyagt G Enkhsaruul B T Takeguchi Synthesis and electrocatalytic activity towards oxygen reduction reaction of gold-nanostars Mongolian Journal of Chemistry fuel cell oxygen reduction reaction gold nanostars |
author_facet |
Oyunbileg G Batnyagt G Enkhsaruul B T Takeguchi |
author_sort |
Oyunbileg G |
title |
Synthesis and electrocatalytic activity towards oxygen reduction reaction of gold-nanostars |
title_short |
Synthesis and electrocatalytic activity towards oxygen reduction reaction of gold-nanostars |
title_full |
Synthesis and electrocatalytic activity towards oxygen reduction reaction of gold-nanostars |
title_fullStr |
Synthesis and electrocatalytic activity towards oxygen reduction reaction of gold-nanostars |
title_full_unstemmed |
Synthesis and electrocatalytic activity towards oxygen reduction reaction of gold-nanostars |
title_sort |
synthesis and electrocatalytic activity towards oxygen reduction reaction of gold-nanostars |
publisher |
Mongolian Academy of Sciences |
series |
Mongolian Journal of Chemistry |
issn |
2226-6739 2414-0082 |
publishDate |
2018-02-01 |
description |
The oxygen reduction reaction (ORR) is a characteristic reaction which determines the performance of fuel cells which convert a chemical energy into an electrical energy. Aims of this study are to synthesize Au-based nanostars (AuNSs) and determine their preliminary electro-catalytic activities towards ORR by a rotating-disk electrode method in alkaline electrolyte. The images obtained from a scanning electron microscope (SEM) and a transmission electron microscope (TEM) analyses confirm the formation of the star-shaped nanoparticles. Among the investigated nanostar catalysts, an AuNS5 with smaller size and a few branches showed the higher electrocatalytic activity towards ORR than other catalysts with a bigger size. In addition, the electron numbers transferred for all the catalysts are approximately two. The present study results infer that the size of the Au-based nanostars may influence greatly on their catalytic activity. The present study results show that the further improvement is needed for Au-based nanostar catalysts towards the ORR reaction. |
topic |
fuel cell oxygen reduction reaction gold nanostars |
url |
https://www.mongoliajol.info/index.php/MJC/article/view/935 |
work_keys_str_mv |
AT oyunbilegg synthesisandelectrocatalyticactivitytowardsoxygenreductionreactionofgoldnanostars AT batnyagtg synthesisandelectrocatalyticactivitytowardsoxygenreductionreactionofgoldnanostars AT enkhsaruulb synthesisandelectrocatalyticactivitytowardsoxygenreductionreactionofgoldnanostars AT ttakeguchi synthesisandelectrocatalyticactivitytowardsoxygenreductionreactionofgoldnanostars |
_version_ |
1725704008918630400 |