Active nitrogen mediated selective ruthenium migration on ceria for high pressure ammonia decomposition

  • Kim, Gunjoo
  • Kim, Gahong
  • Hwang, Hyunsik
  • Yoo, Eunseong
  • Hwang, Jae-eon
  • ... Ham, Hyung Chul
  • 외 11명
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초록

Precise stabilization of atomic structures under reaction environments remains a central challenge in heterogeneous catalysis. Here, we demonstrate that ammonia (NH3) serves as a chemically active nitrogen source to derive the selective migration of ruthenium (Ru) atoms onto ceria (CeO2) domains, forming a durable atomically dispersed structure. During ammonia decomposition, nitrogen-containing intermediates promote atomic redistribution of Ru and anchor the atoms selectively at CeO2, yielding stable Ru-ceria interfaces. The resulting catalyst exhibits high activity in high-pressure ammonia decomposition for hydrogen production, attributed to its lowered activation energy and mitigated hydrogen poisoning. Furthermore, both the catalytic performance and the atomic Ru structure are preserved during long-term high-pressure operation, confirming the exceptional structural stability of the designed configuration. This study establishes active-nitrogen-driven migration as an effective strategy for constructing robust and reaction-friendly catalyst surface.

키워드

CATALYSTSADSORPTIONATOMSRAMANSIO2
제목
Active nitrogen mediated selective ruthenium migration on ceria for high pressure ammonia decomposition
저자
Kim, GunjooKim, GahongHwang, HyunsikYoo, EunseongHwang, Jae-eonLee, Jae WonLee, Hae RyeongKim, KeunsooJeong, HyangsooKim, YongminNam, Suk WooYang, SungeunGuntner, Andreas T.Lee, HyunjooChae, Keun HwaHam, Hyung ChulSohn, Hyuntae
DOI
10.1038/s41467-026-74205-7
발행일
2026-06
유형
Article
저널명
Nature Communications
17
1