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Optimized Synthesis of Fe/N/C Cathode Catalysts for PEM Fuel Cells: A Matter of Iron-Ligand Coordination Strength
It's all in the detail: Highly active Fe/N/C catalysts for the oxygen‐reduction reaction in polymer‐electrolyte‐membrane (PEM) fuel cells can be obtained from a precursor constructed from the zeolitic imidazolate framework ZIF‐8 and an iron–ligand complex if, and only if, the displacement of Zn...
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Published in: | Angewandte Chemie International Edition 2013-07, Vol.52 (27), p.6867-6870 |
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creator | Tian, Juan Morozan, Adina Sougrati, Moulay Tahar Lefèvre, Michel Chenitz, Régis Dodelet, Jean-Pol Jones, Deborah Jaouen, Frédéric |
description | It's all in the detail: Highly active Fe/N/C catalysts for the oxygen‐reduction reaction in polymer‐electrolyte‐membrane (PEM) fuel cells can be obtained from a precursor constructed from the zeolitic imidazolate framework ZIF‐8 and an iron–ligand complex if, and only if, the displacement of ZnII ions from ZIF‐8 by FeII ions is restricted (see picture; TPTZ=2,4,6‐tris(2‐pyridyl)‐s‐triazine). |
doi_str_mv | 10.1002/anie.201303025 |
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subjects | Catalysis Catalysts chelates Chemical Sciences Construction Displacement Fuel cells Iron Precursors Synthesis UV/Vis spectroscopy zeolites |
title | Optimized Synthesis of Fe/N/C Cathode Catalysts for PEM Fuel Cells: A Matter of Iron-Ligand Coordination Strength |
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