石墨氮化碳
X射线吸收光谱法
光谱学
分子
扫描透射电子显微镜
材料科学
纳米技术
金属有机化学
吸收光谱法
表面改性
氮化碳
催化作用
氮化物
化学
透射电子显微镜
物理化学
光催化
有机化学
物理
图层(电子)
量子力学
作者
Sk Amanullah,Weichen Cao,Enzo Brack,Milivoj Plodinec,Christophe Copéret
标识
DOI:10.1002/anie.202417428
摘要
Graphitic carbon nitride (g‐C3N4) has gained significant attention for its catalytic properties, especially in the development of Single Atom Catalysts (SACs). However, the surface chemistry underlying the formation of these isolated metal sites remains poorly understood. In this study we employ Surface OrganoMetallic Chemistry (SOMC) together with advanced microscopic and spectroscopic techniques for an in‐depth analysis of functionalized g‐C3N4 materials, where tailored organosilver probe molecules are used to monitor surface processes and characterize resulting surface species. Amulti‐technique approach – including high‐angle annular dark‐field scanning transmission electron microscopy (HAADF‐STEM), X‐ray absorption spectroscopy (XAS), and multinuclear solid‐state Nuclear Magnetic Resonance spectroscopy (ssNMR), coupled with density functional theory (DFT) calculations – identifies three primary surface species in Ag‐functionalized g‐C3N4: bis‐NHC‐Ag+, dispersed Ag+ sites, and physisorbed molecular precursor. These findings highlight a dynamic grafting process and provide insights into the surface coordination chemistry of functionalized g‐C3N4materials
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