化学
羟醛反应
催化作用
加合物
有机化学
羟醛缩合
作者
Qineng Xia,Qian Cuan,Xiaohui Liu,Xue‐Qing Gong,Guanzhong Lu,Yanqin Wang
标识
DOI:10.1002/anie.201403440
摘要
Abstract Great efforts have been made to convert renewable biomass into transportation fuels. Herein, we report the novel properties of NbO x ‐based catalysts in the hydrodeoxygenation of furan‐derived adducts to liquid alkanes. Excellent activity and stability were observed with almost no decrease in octane yield (>90 % throughout) in a 256 h time‐on‐stream test. Experimental and theoretical studies showed that NbO x species play the key role in CO bond cleavage. As a multifunctional catalyst, Pd/NbOPO 4 plays three roles in the conversion of aldol adducts into alkanes: 1) The noble metal (in this case Pd) is the active center for hydrogenation; 2) NbO x species help to cleave the CO bond, especially of the tetrahydrofuran ring; and 3) a niobium‐based solid acid catalyzes the dehydration, thus enabling the quantitative conversion of furan‐derived adducts into alkanes under mild conditions.
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