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首页> 外文期刊>Advanced Materials >Efficient Nitrate Synthesis via Ambient Nitrogen Oxidation with Ru-Doped TiO_2/RuO_2 Electrocatalysts
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Efficient Nitrate Synthesis via Ambient Nitrogen Oxidation with Ru-Doped TiO_2/RuO_2 Electrocatalysts

机译:通过环境氮氧化与Ru掺杂TiO_2 / Ruo_2电催化剂有效合成

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摘要

Abstract A facile pathway of the electrocatalytic nitrogen oxidation reaction (NOR) to nitrate is proposed, and Ru‐doped TiO2/RuO2 (abbreviated as Ru/TiO2) as a proof‐of‐concept catalyst is employed accordingly. Density functional theory (DFT) calculations suggest that Ruδ+ can function as the main active center for the NOR process. Remarkably doping Ru into the TiO2 lattice can induce an upshift of the d‐band center of the Ru site, resulting in enhanced activity for accelerating electrochemical conversion of inert N2 to active NO*. Overdoping of Ru ions will lead to the formation of additional RuO2 on the TiO2 surface, which provides oxygen evolution reaction (OER) active sites for promoting the redox transformation of the NO* intermediate to nitrate. However, too much RuO2 in the catalyst is detrimental to both the selectivity of the NOR and the Faradaic efficiency due to the dominant OER process. Experimentally, a considerable nitrate yield rate of 161.9 µmol h−1 gcat−1 (besides, a total nitrate yield of 47.9 µg during 50 h) and a highest nitrate Faradaic efficiency of 26.1% are achieved by the Ru/TiO2 catalyst (with the hybrid composition of RuxTiyO2 and extra RuO2 by 2.79 wt% Ru addition amount) in 0.1 m Na2SO4 electrolyte.
机译:摘要提出了电催化氮氧化反应(NOR)至硝酸盐的容易途径,并相应地使用作为概念证据催化剂的Ru掺杂的TiO 2 / RuO 2(缩写为Ru / TiO 2)。密度泛函理论(DFT)计算表明Ruδ+可以用作NOR过程的主动中心。显着掺杂Ru进入TiO 2晶格可以诱导Ru位点的D频带中心的升档,导致加速惰性N2的电化学转化为活性NO *的增强活性。过掺床的Ru离子将导致在TiO 2表面上形成额外的RuO 2,其提供氧气进化反应(Oer)活性位点,用于促进NO *中间体的氧化还原转化为硝酸盐。然而,由于主导OER过程,催化剂中的太多ruo2对甚至和游览效率的选择性也有害。实验,具​​有161.9μmolH-1 GCAT-1的相当大的硝酸盐屈服率(除此之外,在50小时内的总硝酸盐产率为47.9μg)和Ru / TiO2催化剂的最高硝酸盐竞技效率为26.1%(与ruxtiyo2的杂化组合物和额外的ruo2在0.1M Na 2 SO 4电解质中的2.79wt%Ru 2。

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