双金属片
化学
催化作用
格式化
铜
选择性
酒
离解(化学)
金属
无机化学
协同催化
反应机理
有机化学
多相催化
反应中间体
甲醇
酒精氧化
过渡金属
原位
氧化还原
一氧化碳
贵金属
二氧化碳
纳米颗粒
反应条件
乙醇
光化学
作者
Suttiporn Poson,Thapong Teerawatananond,Tanyarat Shoosri,Takanori Miyake,Joongjai Panpranot,Patcharaporn Weerachawanasak
标识
DOI:10.1021/acssuschemeng.6c01889
摘要
Abstract The sustainable conversion of carbon dioxide (CO2)into value-added chemicals remains a major challenge, particularly for the selective formation of C1–C3 alcohols. Herein, bimetallic copper phyllosilicate catalysts (1%X-20%CuPS, X = Zn, Mg, Pt) were developed and systematically evaluated for the liquid-phase hydrogenation of CO2 to alcohols compared with monometallic 20%CuPS as a benchmark. Among these catalysts, 1%Mg-20%CuPS exhibited the highest activity, excellent stability, and good reusability, highlighting the beneficial role of earth-abundant metal promotion. The enhanced performance is attributed to increased surface basicity and stronger CO2 adsorption, which facilitated the formation and stabilization of formate intermediates. Concurrently, in situ reduction of Cu+/Cu0 sites promotes efficient H2 dissociation and subsequent hydrogenation steps. A high surface Mg/Si ratio further stabilizes CO-derived intermediates and promotes CO-mediated C–C coupling, favoring C2+ alcohol formation. Zn incorporation induced similar but less pronounced effects, whereas Pt altered the reaction network, leading to increased byproduct formation and lower alcohol selectivity. After 24 h, the total alcohol selectivity followed the order 1%Mg-20%CuPS (98%) > 1%Zn-20%CuPS (88%) > 1%Pt-20%CuPS (73%) > 20%CuPS (67%). Overall, second metal modification effectively tunes catalyst properties and reaction pathways, with Mg emerging as a sustainable and industrially viable promoter for CO2 valorization to C1–C3 alcohols.
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