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Selective CO_2 Reduction on 2D Mesoporous Bi Nanosheets

机译:二维介孔Bi纳米片的选择性CO_2还原

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摘要

The conversion of CO2 to value-added products using electrical or solar energy represents an attractive means for the capture and utilization of atmospheric CO2. Formate is a popular product from CO2 reduction, but its reaction selectivity is usually unsatisfactory. Tin-based materials have attracted the most attention for formate production at present. Unfortunately, most of them only exhibit moderate selectivity in a narrow and highly cathodic potential window. In this study, it is demonstrated that traditionally under-explored bismuth has a much greater potential for formate production than tin or other materials. Mesoporous bismuth nanosheets are prepared here by the cathodic transformation of atomic-thick bismuth oxycarbonate nanosheets. They enable the selective CO2 reduction to formate with large current density, excellent Faradaic efficiency (approximate to 100%) over a broad potential window and great operation stability. Moreover, Bi nanosheets are integrated with an oxygen evolution reaction electrocatalyst in full cells, and achieve efficient and robust solar conversion of CO2/H2O to formate/O-2.
机译:使用电能或太阳能将CO2转化为增值产品代表了一种有吸引力的手段,用于捕获和利用大气中的CO2。甲酸盐是减少二氧化碳排放的流行产品,但其反应选择性通常不令人满意。锡基材料目前是甲酸生产最受关注的领域。不幸的是,它们中的大多数仅在狭窄且高度阴极的电位窗口中显示出适度的选择性。在这项研究中,事实证明,与锡或其他材料相比,传统上开采不足的铋具有更大的甲酸生产潜力。介孔铋纳米片在这里是通过原子厚的碳酸氧铋铋纳米片的阴极转化而制备的。它们使选择性的CO2降低成为可能,并具有大电流密度,在宽广的潜在窗口范围内具有出色的法拉第效率(约100%)和出色的操作稳定性。此外,Bi纳米片与氧气释放反应电催化剂集成在整个电池中,并实现了将CO2 / H2O高效有效地转化为甲酸/ O-2的功能。

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