科研速览 · Science Skim继续刷下去 · Keep skimming →
◆ JACS Au2025-10-15· Catalysis

Ion-Exchanged Cu-SSZ-13 for Catalytic Removal of Dichloromethane: The Essence of Isolated Cu Cations and Reaction Mechanism

Long-Ren Ouyang, Xiaoli Chen, Peng-Ge Li, Yi-Fan Yao, Jiarong Li, Aiping Jia, Yu Wang, De‐Li Chen, Ji-Qing Lu

原始摘要(英文原文)· Original abstract
High Resolution Image Download MS PowerPoint Slide An ion-exchanged Cu-SSZ-13 catalyst exhibited excellent performance in the deep oxidation of dichloromethane, achieving a high reaction rate of 2.41 mmol g –1 h –1 at 200 °C without producing chlorine-containing byproducts. Detailed characterizations indicated abundant isolated Cu species, specifically, [ZCu 2+ (OH)] + and Z 2 Cu 2+, in the catalyst. Quantitative analysis of the activity results demonstrated that the Z 2 Cu 2+ in a 6-membered ring had the highest activity (with a turnover frequency of 1.8 × 10 –3 s –1 at 200 °C), which was 5-fold higher than that of the [ZCu 2+ (OH)] + species in an 8-membered ring and 9-fold higher than the acid sites in the SSZ-13 support. Importantly, the isolated Cu species remained intact during the reaction, ensuring good catalyst stability. In contrast, CuO particles, present in a higher amount in an impregnated Cu/SSZ-13 catalyst, were readily chlorinated, leading to notable deactivation. Moreover, theoretical calculations unraveled the reaction routes, clarifying the crucial role of the frustrated Lewis pair (Cu 6mr ···O 4mr ) species in accelerating the reaction. Therefore, this study not only broadens the application scope of SSZ-13-based catalysts but also provides valuable insights for designing efficient catalysts for the catalytic removal of chlorinated volatile organic compounds.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

Ion-Exchanged Cu-SSZ-13 for Catalytic Removal of Dichloromethane: The Essence of Isolated Cu Cations and Reaction Mechanism — 科研速览 Science Skim