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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Identification of the Most Active Sites and Surface Water Species: A Comparative Study of CO and Methanol Oxidation Reactions on Core-Shell M@Pt (M = Ru, Au) Nanoparticles by in Situ IR Spectroscopy
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Identification of the Most Active Sites and Surface Water Species: A Comparative Study of CO and Methanol Oxidation Reactions on Core-Shell M@Pt (M = Ru, Au) Nanoparticles by in Situ IR Spectroscopy

机译:识别最活跃的站点和地表水物种:原位红外光谱法对核壳M @ Pt(M = Ru,Au)纳米粒子上的CO和甲醇氧化反应的比较研究

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This paper reports a detailed electrochemical in situ surface-enhanced infrared reflection absorption spectroscopic (SEIRAS) investigation of two different core-shell, Ru@Pt and Au@Pt/C, metal nanoparticles (NPs). We were able to identify the most active sites and surface water species involved in the carbon monoxide oxidation reaction (COR) and methanol oxidation reaction (MOR) on these NPs. We discovered that exposing the as-synthesized Ru@Pt NPs to air could turn them into largely surface-ruthenated NPs whose structure was rather stable under multiple potential cyclings between -0.2, and 0.7 V (vs Ag/ AgCl, 3 M) and reduction at -0.3 V but could be annealed by the COR. The SEIRAS data enabled the identification of the Ru-coordinated-to-Ru, Ru-coordinated-to-Pt, and Pt-islands-on-Ru-core sites on the COR-annealed Ru@Pt NPs among which the most active sites were the Pt-isIands-on-Ru-core sites for the COR and MOR, as evidenced by an onset potential as low as -0.1 V for the COR. For the Au@Pt/C NPs, the SEIRAS data showed a much higher onset potential (0.45 V) for the COR that accounted for their much lower activity observed as compared to that of the Ru@Pt in terms of COR and MOR Among the three different surface water species, namely the water monomer, the weakly hydrogen-bonded water, and the strongly hydrogen-bonded water, the SEIRAS data pointed to the weakly hydrogen-bonded water as the dominant source that provided oxygen for the COR and MOR. Furthermore, the SEIRAS data showed that the surface: water structure was very different in reaction media, i.e., with preadsorbed CO or methanol, from that in pure supporting electrolyte, an observation that strongly cautions the practice of using the latter to identify the active water species.
机译:本文报道了详细的电化学原位表面增强红外反射吸收光谱(SEIRAS)研究,研究了两种不同的核壳,Ru @ Pt和Au @ Pt / C,金属纳米颗粒(NPs)。我们能够确定这些NP上一氧化碳氧化反应(COR)和甲醇氧化反应(MOR)涉及的最活跃的部位和地表水种类。我们发现,将合成后的Ru @ Pt NP暴露于空气中可以将其转变为表面上经过表面钌化的NP,其结构在-0.2至0.7 V(vs Ag / AgCl,3 M)和还原之间的多个潜在循环下相当稳定电压为-0.3 V,但可以通过COR进行退火。 SEIRAS数据可在COR退火的Ru @ Pt NP上识别Ru配位至Ru,Ru配位至Pt和Pt岛上Ru核心位点,其中活性最高的位点是COR和MOR的Pt-isIands-Ru-ru核心位点,COR的启动电位低至-0.1 V证明了这一点。对于Au @ Pt / C NPs,SEIRAS数据显示COR的起始电势(0.45 V)高得多,这表明它们的观察到的活性比Ru @ Pt的COR和MOR更低。 SEIRAS数据指出,在三种不同的地表水物种(即水单体,弱氢键水和强氢键水)中,弱氢键水是为COR和MOR提供氧气的主要来源。此外,SEIRAS数据显示,在反应介质中,即预先吸附的CO或甲醇中,表面:水的结构与纯载体电解质中的表面:水的结构有很大不同,这一观察强烈提醒人们使用后者识别活性水的做法种类。

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