Artikel

Atomic‐Scale Mott–Schottky Analogy in SnCu Nanoalloy Promote High‐Efficiency Urea Electrosynthesis at Ultralow Potential

02.09.2025

Electron-enriched Cu active sites arising from an atomic-scale Mott–Schottky analogy in SnCu nanoalloy catalyst, exhibited quadruple synergism: enhanced CO2 and NO3 co-adsorption, elevated *CO surface coverage, accelerated *NHO-*CO coupling, and concurrent HER suppression, collectively achieving a twofold enhancement in urea yield compared to pristine Cu.


Abstract

Electrocatalytic urea synthesis from CO2 and NO3 offers a sustainable strategy to address environmental challenges and growing urea demand. However, current systems suffer inefficient C-N coupling due to poor selectivity toward critical C/N-intermediates. Herein, we engineered atomic-scale Mott–Schottky analogy in SnCu nanoalloy to create electron-enriched Cu sites, enabling remarkable urea production through quadruple synergy. Sn2Cu delivered exceptional urea yield (28.9 mmol h−1 gcat. −1) with 46.7% Faradaic efficiency (FE) in H-cell, while demonstrating practical potential with superior catalytic performance (yield: 72.6 mmol h−1 gcat. −1, FE: 41.3%, stability: 60 h) at −0.52 V in flow cell. In-situ synchrotron radiation-Fourier transform infrared spectroscopy and theoretical calculations revealed electron-enriched Cu active sites enhanced CO2/NO3 co-adsorption and *CO coverage, while steering reaction pathway toward *CO-*NHO coupling and suppressing hydrogen evolution, thereby reducing rate-determining step energy barrier and prioritizing C-N coupling. This work develops a structure–adsorption-reactivity framework, providing fundamental guidance for advanced urea electrocatalyst design.

Verwandte Artikel
Atomic‐Scale Mott–Schottky Analogy in SnCu Nanoalloy Promote High‐Efficiency Urea Electrosynthesis at Ultralow Potential
In Kürze
Atomic‐Scale Mott–Schottky Analogy in SnCu Nanoalloy Promote High‐Efficiency Urea Electrosynthesis at Ultralow Potential
Ehrungen, Karriere
Atomic‐Scale Mott–Schottky Analogy in SnCu Nanoalloy Promote High‐Efficiency Urea Electrosynthesis at Ultralow Potential
Aus den Fachgruppen
Atomic‐Scale Mott–Schottky Analogy in SnCu Nanoalloy Promote High‐Efficiency Urea Electrosynthesis at Ultralow Potential
EuChemS Policy Workshop „PFAS”
Atomic‐Scale Mott–Schottky Analogy in SnCu Nanoalloy Promote High‐Efficiency Urea Electrosynthesis at Ultralow Potential
Bafög beantragen

Das könnte Sie auch interessieren

GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

In Kürze

GÖCH

Termin vormerken: Generalversammlung am 21. September Die diesjährige Generalversammlung ist im Rahmen der Chemietage am...

30.04.2026
GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

Ehrungen, Karriere

Service

Ehrungen Finnian Freeling, Dr.: Promotionspreis Wasserchemie der Wasserchemischen Gesellschaft, Fachgruppe der GDCh, für...

30.04.2026
GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

Aus den Fachgruppen

GDCh

Bauchemie Neuer Vorstand Die GDCh-Fachgruppe Bauchemie hat ihren Vorstand für die Amtszeit 1. Januar 2026 bis 31. Dezemb...

30.04.2026