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◆ Environmental Science & Technology2025-10-01· Nitrite

Rational Pathways Tuning Facilitates Photoelectrochemical Upcycling of Nitrite to Ammonia Using CuPd Nanoalloy on GaN/Si Photocathode

Kejian Li, Tianyin Qiu, Bingxing Zhang, Zhengwei Ye, Jan Paul Menzel, Wan Jae Dong, Yuyang Pan, Songtao Tang, Zhuoran Long, Víctor S. Batista, Zetian Mi

原始摘要(英文原文)· Original abstract
Solar-driven photoelectrochemical conversion of nitrite to ammonia represents a sustainable yet unexplored approach for environmental remediation and resource recovery. Here, we demonstrate that Cu 5 Pd 1 alloy nanoparticles, integrated with vertically grown GaN nanowires on an n + -p Si photocathode (Cu 5 Pd 1 /GaN/Si), enable highly efficient and selective nitrite reduction to ammonia. This photoelectrode achieves a Faradaic efficiency of 99.7% for NH 3, with a yield rate of 162.2 μmol h –1 cm –2 and a nearly 100% selectivity. Additionally, the Cu 5 Pd 1 /GaN/Si photoelectrode maintains robust performance in the presence of various anions and can effectively remove ∼98% of nitrite even at low concentrations. Density functional theory calculations, supported by in situ spectroscopic techniques, reveal that Cu–Pd alloying fundamentally alters the nitrite reduction mechanisms. Unlike the *NOH-mediated pathway on Cu and Pd, which can lead to competing N 2 formation, the CuPd alloy preferentially stabilizes the *NHO intermediate, making NH 3 production thermodynamically preferred and highly selective. These findings highlight that a rational electrocatalyst design can effectively tune reaction pathways to enhance both the efficiency and selectivity of photoelectrocatalytic nitrite upcycling.
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Rational Pathways Tuning Facilitates Photoelectrochemical Upcycling of Nitrite to Ammonia Using CuPd Nanoalloy on GaN/Si Photocathode — 科研速览 Science Skim