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Pt-Ga Model SCALMS on Modified HOPG: Growth and Adsorption Properties

机译:PT-GA型号修饰跳跃的尺寸:生长和吸附性能

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Single atom catalysts hold a great potential in heterogeneous catalysis. In this model study, we report on the observation of Pt single atoms in low-melting-point Pt-Ga alloy prepared on modified highly oriented pyrolytic graphite (HOPG) under ultrahigh vacuum (UHV) conditions. In the first part, we examined the growth of Pt nanoparticles (NP) on HOPG modified by Ar+ bombardment. In the second part, we used physical vapor co-deposition of Pt and Ga to prepare model systems for supported catalytically active liquid metal solutions. We employed infrared reflection absorption spectroscopy with CO as a probe molecule and atomic force microscopy to study the growth and adsorption properties of Pt-Ga aggregates in comparison to Pt NPs. The presence of CO during Pt deposition leads to formation of ordered Pt particles mainly exposing terrace sites. On Pt-Ga nanoalloys, CO induces Pt segregation to the surface. In contrast, Ga deposition onto Pt in UHV or evaporation of small amounts of Pt onto Ga results in the formation of isolated Pt atoms on the surface of the alloy. Comparing alloys with different Pt concentrations, we show that the coordination environment around Pt influences the binding energy of the adsorbed CO.
机译:单个原子催化剂在异质催化中具有很大的潜力。在该模型研究中,我们在超高真空(UHV)条件下在改性高度取向的热解石墨(HOPG)上制备的低熔点PT-GA合金中PT单原子的观察。在第一部分中,我们检查了AR +轰炸修饰的PT纳米颗粒(NP)的生长。在第二部分中,我们使用PT和GA的物理蒸汽共沉积,为支持的催化活性液态金属溶液制备模型系统。我们使用红外反射吸收光谱用CO作为探针分子和原子力显微镜,以研究Pt-Ga骨料的生长和吸附性与Pt NPS相比。 Pt沉积期间CO的存在导致形成有序的PT颗粒,主要暴露露台部位。在PT-GA纳诺合金上,CO将Pt偏析诱导到表面。相反,Ga沉积到UHV中的Pt或少量Pt蒸发到Ga上导致合金表面上的分离的Pt原子形成。比较不同PT浓度的合金,我们表明PT周围的配位环境影响吸附的CO的结合能量。

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