Nitrate reduction to ammonia catalyzed by GaN/Si photoelectrodes with metal clusters.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 40204702.
- Also identified by DOI 10.1038/s41467-025-58372-7 and PMC identifier 11982259.
- Licence recorded as CC BY-NC-ND.
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Abstract
The development of photoelectrochemical cells for reduction of nitrate to ammonia under solar light is of significant interest for the production of clean chemicals and fuels but has remained a daunting challenge. Here, we investigate various metal catalysts supported on GaN nanowires grown on n<sup>+</sup>-p Si wafer - an emerging functional platform for scalable artificial photosynthesis - and demonstrate highly stable and efficient photoelectrochemical nitrate reduction reaction. We find that Co and Ni catalysts on GaN/Si exhibit the best performance, with an onset potential >0.3 V<sub>RHE</sub> and a faradaic efficiency of NH<sub>3</sub> of 99% at 0.2 V<sub>RHE</sub>. These results highlight the advantage of photoelectrochemical system in achieving efficient nitrate reduction under more positive potentials. In-situ measurements and theoretical calculations reveal that the binding modes of the <math xmlns="http://www.w3.org/1998/Math/MathML"> <msubsup><mrow><mi>NO</mi></mrow> <mrow><mn>2</mn></mrow> <mrow><mo>-</mo></mrow> </msubsup> </math> intermediate play a key role in the NH<sub>3</sub> synthetic process. These results demonstrate that the rational design of catalysts on photoelectrodes can construct synergistic metal-semiconductor interactions for efficient and stable photoelectrochemical NH<sub>3</sub> synthesis.