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- W3197348046 abstract "Abstract Energy, which is defined as the most basic resource necessary for the production, is an indispensable part of all human activities. Energy needs are constantly growing with the increasing population, which has led scientists to look into various ways to meet these needs. Fuel cells are energy converter products with many important features, such as silent activity, being environmentally friendly, having a low number of moving parts, and not requiring maintenance costs. Hydrogen-powered polymer electrolyte membrane fuel cells are promising fuel cells because of their working conditions, applicability, and excellent performance. Although there are many advantages, the main issue encountered in fuel cells fed with hydrogen concerns production and distribution. Problems with the production, storage, and distribution of hydrogen have led to the search for alternative fuels that contain hydrogen. Alcohols are easy to find, store, and transport, and provide high power density. The main problem directly encountered in alcohol fuel cells is that the alcohols used as fuel are not active enough. Low activity of alcohols increases the need for catalysts. Platinum (Pt) and ruthenium (Ru) catalysts were used in the first studies aimed at meeting this need. However, the high cost of these catalysts and the problem of poisoning are the most important obstacle in the development of alcohol fuel cell technology directly. For this reason, synthesizing nanocatalysts, which will directly contribute to the solution of the problem of activity in alcohol fuel cells, is a very important field of study." @default.
- W3197348046 created "2021-09-13" @default.
- W3197348046 creator A5023431656 @default.
- W3197348046 creator A5046118581 @default.
- W3197348046 creator A5047090409 @default.
- W3197348046 creator A5047866696 @default.
- W3197348046 date "2021-01-01" @default.
- W3197348046 modified "2023-10-16" @default.
- W3197348046 title "Different synthesis methods of nanomaterials for direct alcohol fuel cells" @default.
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- W3197348046 doi "https://doi.org/10.1016/b978-0-12-821713-9.00026-3" @default.
- W3197348046 hasPublicationYear "2021" @default.