氧气
分子氧
格子(音乐)
材料科学
化学工程
纳米技术
化学
化学物理
物理
有机化学
声学
工程类
作者
Tengfei Zhang,Peng Zheng,Jiajian Gao,Xiaolong Liu,Yongjun Ji,Junbo Tian,Yang Zou,Zhiyi Sun,Qiao Hu,Guokang Chen,Wenxing Chen,Xi Liu,Ziyi Zhong,Guangwen Xu,Tingyu Zhu,Fabing Su
标识
DOI:10.1038/s41467-024-50790-3
摘要
Developing high-performance Pt-based catalysts with low Pt loading is crucial but challenging for CO oxidation at temperatures below 100 °C. Herein, we report a Pt-based catalyst with only a 0.15 wt% Pt loading, which consists of Pt–Ti intermetallic single-atom alloy (ISAA) and Pt nanoparticles (NP) co-supported on a defective TiO2 support, achieving a record high turnover frequency of 11.59 s–1 at 80 °C and complete conversion of CO at 120 °C. This is because the coexistence of Pt–Ti ISAA and Pt NP significantly alleviates the competitive adsorption of CO and O2, enhancing the activation of O2. Furthermore, Pt single atom sites are stabilized by Pt–Ti ISAA, resulting in distortion of the TiO2 lattice within Pt–Ti ISAA. This distortion activates the neighboring surface lattice oxygen, allowing for the simultaneous occurrence of the Mars-van Krevelen and Langmuir–Hinshelwood reaction paths at low temperatures. Developing high-performance Pt-based catalysts with low Pt loading is crucial but challenging for CO oxidation. Here, the authors report a novel Pt/TiO2 catalyst consisting of Pt–Ti intermetallic single-atom alloy and Pt nanoparticles to efficiently catalyze CO oxidation.
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