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Selective synthesis of dense high-spin D1 active sites <i>via</i> engineered less-graphitized carbon environments

10

Citations

38

References

2025

Year

Abstract

Introducing ascorbic acid in the synthesis of Fe–N–C catalysts drastically increases its D1 active site content, improving the cathodic activity of Fe–N–C, but also reducing the stability of the catalyst in proton exchange membrane fuel cells.

References

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