Su Hai-Sheng, Liu Yiwei, Tian Hao, Chen Dinghui, Shen Qikai, Chang Xiaoxia, Lu Qi, Xu Bingjun
College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, China.
Beijing National Laboratory for Molecular Sciences, Beijing 100871, China.
J Am Chem Soc. 2024 Jun 26;146(25):17170-17179. doi: 10.1021/jacs.4c03184. Epub 2024 Jun 12.
Selective activation of C-H bonds in light alkanes under mild conditions is challenging but holds the promise of efficient upgrading of abundant hydrocarbons. In this work, we report the conversion of propane to propylene with ∼95% selectivity on Cu(I)-ZSM-5 with O at room temperature and pressure. The intraporous Cu(I) species was oxidized to Cu(II) during the reaction but could be regenerated with H at 220 °C. Diffuse reflectance ultraviolet spectroscopy indicated the presence of both Cu-O and Cu(μ-O) species in the zeolite pores during the reaction, and electron paramagnetic resonance results showed that propane activation occurred via a radical-mediated pathway distinct from that with HO as the oxidant. Correlation between spectroscopic and reactivity results on Cu(I)-ZSM-5 with different Cu loadings suggests that the isolated intraporous Cu(I) species is the main active species in propane activation.
在温和条件下对轻质烷烃中的C-H键进行选择性活化具有挑战性,但有望实现对丰富碳氢化合物的高效升级。在这项工作中,我们报道了在室温和常压下,以氧气为氧化剂,在Cu(I)-ZSM-5催化剂上丙烷转化为丙烯的选择性约为95%。反应过程中孔内的Cu(I)物种被氧化为Cu(II),但在220°C下可用氢气再生。漫反射紫外光谱表明反应过程中沸石孔内同时存在Cu-O和Cu(μ-O)物种,电子顺磁共振结果表明丙烷活化通过与以羟基自由基为氧化剂时不同的自由基介导途径发生。对不同铜负载量的Cu(I)-ZSM-5进行光谱和反应活性结果的相关性研究表明,孤立的孔内Cu(I)物种是丙烷活化的主要活性物种。