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Modulating the electrocatalytic CO2 reduction performances of bismuth nanoparticles with carbon substrates with controlled degrees of oxidation

机译:调制electrocatalytic二氧化碳的减少表演铋纳米粒子的碳基板和控制程度的氧化

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摘要

The catalytic performances of metal nanoparticles can be widely tuned and promoted by the metal–support interactions. Here, we report that the morphologies and electrocatalytic CO2 reduction reaction (CO2RR) properties of bismuth nanoparticles (BiNPs) can be rationally modulated by their interactions with carbon black (CB) supports by controlling the degree of surface oxidation. Appropriately oxidized CB supports can provide sufficient oxygen-containing groups for anchoring BiNPs with tunable sizes and surface areas, desirable key intermediate adsorption abilities, appropriate surface wettability, and adequate electron transfer abilities. As a result, the optimized Bi/CB catalysts exhibited a promoted CO2RR performance with a Faradaic efficiency of 94% and a current density of 16.7 mA cm−2 for HCOO− at −0.9 V versus a reversible hydrogen electrode. Our results demonstrate the significance of regulating the interactions between supports and metal nanoparticles for both synthesis of the catalyst and electrolysis applications, which may find broader applicability in more electrocatalyst designs.
机译:金属纳米颗粒的催化性能可广泛关注和提升吗金属支架相互作用。形态和electrocatalytic二氧化碳还原反应(CO2RR)铋的性质纳米颗粒(BiNPs)可以合理调节通过他们的交互与炭黑(CB)支持通过控制表面的程度氧化。提供足够的含氧集团锚定BiNPs与可调大小和表面地区,理想的关键中间吸附能力,适当的表面润湿性能,足够的电子转移能力。因此,优化的Bi / CB催化剂表现出一个提升CO2RR感应电流的性能效率94%,电流密度为16.7马2厘米−HCOO−−0.9 V和可逆的氢电极。调节的相互作用的重要性支持和金属纳米颗粒之间和电解合成的催化剂应用程序可能会发现更广泛适用性更electrocatalyst设计。

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