Development of CO2-to-Methanol Hydrogenation Catalyst by Focusing on the Coordination Structure of the Cu Species in Spinel-Type Oxide Mg1-xCuxAl2O4

被引:23
|
作者
Tada, Shohei [7 ]
Otsuka, Fumito [1 ]
Fujiwara, Kakeru [2 ]
Moularas, Constantinos [3 ]
Deligiannakis, Yiannis [3 ]
Kinoshita, Yuki [4 ]
Uchida, Sayaka [4 ]
Honma, Tetsuo [5 ]
Nishijima, Masahiko [6 ]
Kikuchi, Ryuji [1 ]
机构
[1] Univ Tokyo, Dept Chem Syst Engn, Tokyo 1138656, Japan
[2] Yamagata Univ, Dept Chem & Chem Engn, Yamagata 9928510, Japan
[3] Univ Ioannina, Dept Phys, Ioannina 45110, Greece
[4] Univ Tokyo, Sch Arts & Sci, Dept Basic Sci, Tokyo 1538902, Japan
[5] Japan Synchrotron Radiat Res Inst, Sayo, Hyogo 6795198, Japan
[6] Tohoku Univ, Electron Microscopy Ctr, Sendai, Miyagi 9808577, Japan
[7] Ibaraki Univ, Dept Mat Sci & Engn, Ibaraki 3168511, Japan
基金
日本学术振兴会;
关键词
copper; spinel; coordination structure; CO2; hydrogenation; methanol synthesis; CARBON-MONOXIDE OXIDATION; METHANOL SYNTHESIS; CO2; HYDROGENATION; COMPOSITE CATALYSTS; ACTIVE-SITES; COPPER; SURFACE; TEMPERATURE; SELECTIVITY; REDUCTION;
D O I
10.1021/acscatal.0c02868
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Dispersion of metallic Cu nanoparticles on a metal oxide support increases the number of exposed metallic Cu sites and/or Cu-support interfacial sites, resulting in good catalytic performance for CO2-to-methanol hydrogenation. However, the formation of highly dispersed Cu nanoparticles is challenging because they are easily sintered. Here, we studied Cu nanoparticle formation by a simple deposition-reduction technique using Cu-doped MgAl2O4 (Mg1-xCuxAl2O4). Mg(1-)xCu(x)Al(2)O(4) possessed the following three types of Cu2+ species: short O-Cu octahedrally coordinated [CuO6](s), elongated O-Cu octahedrally coordinated [CuO6](el), and tetrahedrally coordinated [CuO4](t). The former two are found in the inverse-spinel-type Mg1-xCuxAl2O4, while the other is found in the normal-spinel-type Mg1-xCuxAl2O4. Additionally, by focusing on the difference in the reducibility of the Cu2+ species, we clarified that their fraction is related to Cu loading. For low Cu loading (x < 0.3), Mg1-xCuxAl2O4 mainly contained the [CuO6](s) species. On the other hand, for high Cu loading (x = 0.3), the fraction of the [CuO6](el) and [CuO4](t) species increased. Notably, among the prepared catalysts, H-2-reduced Mg0.8Cu0.2Al2O4 (x = 0.2) had the largest number of exposed metallic Cu sites, resulting in its good catalytic performance. Hence, the H-2 reduction of [CuO6](s) is essential for forming metallic Cu nanoparticles on metal oxides.
引用
收藏
页码:15186 / 15194
页数:9
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