苯酚
化学
催化作用
还原胺化
环己胺
胺化
氨
有机化学
解吸
氨生产
吸附
水解
组合化学
无机化学
亲核细胞
多相催化
酚类
作者
Xuewei Gao,Abilize Yasen,Yuqi Yao,Xiaoyu Zhang,Yongqiang Yao,Bin Dai,Zhengang Ke
标识
DOI:10.1021/acs.iecr.5c05115
摘要
Synthesis of cyclohexylamine via reductive amination of biomass-derived phenol aligns with sustainable chemistry principles. However, the structure–activity relationships governing catalytic performance remain unexplored, which is crucial for regulating the product selectivity. In this work, an effective Ni3Al1Ox catalyst was developed for reductive amination of phenol to cyclohexylamine, achieving excellent yields. Both Ni0 and Ni2+ species are essential, and the best Ni2+/Ni0 ratio is 2.86. The optimal Ni2+/Ni0 ratio of the Ni3Al1Ox-600 catalyst is favorable for the adsorption of phenol and NH3 and the desorption of cyclohexylamine, which is key for achieving superior catalytic activity and selectivity.
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