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Photoelectrocatalytic reduction of CO2 to syngas over Ag nanoparticle modified p-Si nanowire arrays

机译:合成气Photoelectrocatalytic减少二氧化碳在Ag纳米改性p-Si纳米线数组

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摘要

The solar energy-driven reduction of CO2 and H2O to syngas (H-2/CO), an important platform to produce chemicals, is of significance for alleviating greenhouse gas emission and utilizing sustainable solar energy. Here, we report a facile method for the photoelectrocatalytic reduction of CO2 and H2O to syngas over an Ag nanoparticle (NP) modified p-Si nanowire array catalyst. The particle size of Ag significantly influences the activity of CO2 reduction to CO. The H-2/CO molar ratio in reduction products can be tuned in the range from 1 to 4 by controlling the size of Ag NPs from 4.2 to 16 nm. The adsorption strength of CO on the catalyst was found to decline with the increase in the size of Ag NPs. The Ag NPs of 8.2 nm, which possess a moderate CO adsorption strength, exhibit the maximum production of CO with the H-2/CO ratio of 2/1.
机译:太阳能能源驱动的减少二氧化碳和水合成气(h2 / CO),一个重要的平台产生化学物质,意义重大减轻温室气体排放和利用可持续的太阳能。photoelectrocatalytic灵巧的方法减少二氧化碳和水对合成气Ag)纳米颗粒(NP)修改p-Si纳米线阵列催化剂。影响二氧化碳减排的活动有限公司h2 / CO摩尔比率在降低产品调整的范围从1到4通过控制Ag NPs的大小从4.2到16 nm。CO在催化剂的吸附强度发现与的大小的增加下降Ag NPs。温和的CO吸附强度,表现出的最大的生产公司的h2 / CO的比例2/1.

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