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首页> 外文期刊>Journal of Colloid and Interface Science >Selective carbon dioxide electroreduction to ethylene and ethanol by core-shell copper/cuprous oxide
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Selective carbon dioxide electroreduction to ethylene and ethanol by core-shell copper/cuprous oxide

机译:通过芯壳铜/亚铜氧化物选择性二氧化碳电氧化物对乙烯和乙醇

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摘要

Developing an effective catalyst to reduce carbon dioxide (CO2) to value-added C2+ products is a key challenge for CO2 utilization. Here we report a core-shell copper with native oxide (Cu@Cu2O) catalyst featuring a thin native oxide layer on the surface grown under ambient conditions. The Cu(I) oxide species on Cu@Cu2O surface remained relatively stable against reduction under CO2 electroreduction condition, and the synergism between surface Cu+ and Cu-0 in Cu@Cu2O contributed to boosting its efficiency and selectivity toward C-2 products. This Cu@Cu2O catalyst achieved an excellent selectivity (similar to 50% at -1.0 V vs reversible hydrogen electrode) for C-2 (ethylene and ethanol) production. (C) 2019 Elsevier Inc. All rights reserved.
机译:开发有效催化剂以减少二氧化碳(CO2)至增值C2 +产物是CO 2利用的关键挑战。 在这里,我们报告了具有天然氧化物(Cu @ Cu2O)催化剂的核 - 壳铜,其在环境条件下的表面上生长的薄天然氧化物层。 Cu(i)Cu(i)Cu 2 Cu 2 O表面的氧化物物质对CO 2电导条件下的降低保持相对稳定,并且在Cu 2 O中的表面Cu +和Cu-0之间的协同作用有助于提高其对C-2产品的效率和选择性。 该Cu @ Cu 2 O催化剂的选择性优异的选择性(类似于50%在-1.0VVs可逆氢电极),用于C-2(乙烯和乙醇)生产。 (c)2019 Elsevier Inc.保留所有权利。

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