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A quick and versatile one step metal–organic chemical deposition method for supported Pt and Pt-alloy catalysts

机译:一种用于支撑Pt和Pt合金催化剂的快速且多功能的一步金属 - 有机化学沉积方法

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A simple, modified Metal–Organic Chemical Deposition (MOCD) method for Pt, PtRu and PtCo nanoparticle deposition onto a variety of support materials, including C, SiC, B _(4) C, LaB _(6) , TiB _(2) , TiN and a ceramic/carbon nanofiber, is described. Pt deposition using Pt(acac) _(2) as a precursor is shown to occur via a mixed solid/liquid/vapour precursor phase which results in a high Pt yield of 90–92% on the support material. Pt and Pt alloy nanoparticles range 1.5–6.2 nm, and are well dispersed on all support materials, in a one-step method, with a total catalyst preparation time of ~10 hours (2.4–4× quicker than conventional methods). The MOCD preparation method includes moderate temperatures of 350 °C in a tubular furnace with an inert gas supply at 2 bar, a high pressure (2–4 bar) compared to typical MOCVD methods (~0.02–10 mbar). Pt/C catalysts with Pt loadings of 20, 40 and 60 wt% were synthesised, physically characterised, electrochemically characterised and compared to commercial Pt/C catalysts. TEM, XRD and ex situ EXAFS show similar Pt particle sizes and Pt particle shape identifiers, namely the ratio of the third to first Pt coordination numbers modelled from ex situ EXAFS, between the MOCD prepared catalysts and commercial catalysts. Moreover, electrochemical characterisation of the Pt/C MOCD catalysts obtained ORR mass activities with a maximum of 428 A g _(Pt) ~(?1) at 0.9 V, which has similar mass activities to the commercial catalysts (80–160% compared to the commercial Pt/C catalysts).
机译:一种简单,改性的金属 - 有机化学沉积(MOCD)方法,用于PT,PTRU和PTCO纳米粒子沉积到各种载体材料上,包括C,SiC,B _(4)C,Lab _(6),TIB _(2描述了锡和陶瓷/碳纳米纤维。使用Pt(Acac)_(2)作为前体的Pt沉积显示通过混合的固体/液/蒸气前体相发生,这导致载体材料上的高分子产率为90-92%。 Pt和Pt合金纳米颗粒的范围为1.5-6.2nm,并在一步法中分散在所有载体材料上,总催化剂制备时间为约10小时(比常规方法更快)。 MOCD制备方法包括在与典型的MOCVD方法(〜0.02-10毫巴)相比,2巴的管状炉中具有350℃的中等温度,其具有惰性气体供应,高压(2-4巴)(〜0.02-10毫巴)。合成的Pt / C催化剂为20,40和60wt%,物理表征,电化学表征和与商业Pt / C催化剂相比。 TEM,XRD和EX原位EXAFS显示出类似的PT粒度和PT粒子形状标识符,即在MOCD制备的催化剂和商业催化剂之间从EX原位外部建模的第三个至第一PT协调号的比率。此外,Pt / C moCd催化剂的电化学表征在0.9V的0.9V的最大428Ag _(Pt)〜(α1)的矿石致表征,其与商业催化剂相似(80-160%)到商业Pt / c催化剂)。

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