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首页> 外文期刊>Nanoscale >Sputter deposition of highly active complex solid solution electrocatalysts into an ionic liquid library: effect of structure and composition on oxygen reduction activity
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Sputter deposition of highly active complex solid solution electrocatalysts into an ionic liquid library: effect of structure and composition on oxygen reduction activity

机译:溅射沉积高度活跃的复杂的固体解决方案electrocatalysts离子液体库:结构和组成的影响氧气减少活动

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Complex solid solution electrocatalysts (often called high-entropy alloys) present a new catalyst class with highly promising features due to the interplay of multi-element active sites. One hurdle is the limited knowledge about structure-activity correlations needed for targeted catalyst design. We prepared Cr-Mn-Fe-Co-Ni nanoparticles by magnetron sputtering a high entropy Cantor alloy target simultaneously into an ionic liquid library. The synthesized nanoparticles have a narrow size distribution but different sizes (from 1.3 +/- 0.1 nm up to 2.6 +/- 0.3 nm), different crystallinity (amorphous, face-centered cubic or body-centered cubic) and composition (i.e. high Mn versus low Mn content). The Cr-Mn-Fe-Co-Ni complex solid solution nanoparticles possess an unprecedented intrinsic electrocatalytic activity for the oxygen reduction reaction in alkaline media, some of them even surpassing that of Pt. The highest intrinsic activity was obtained for body-centered cubic nanoparticles with a low Mn and Fe content which were synthesized using the ionic liquid 1-etyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide [Emimi][(Tf)(2)N].
机译:复杂的固溶体electrocatalysts(通常是提出一个新的称为熵合金)由于催化剂类非常有前途的特性多单元的相互作用活跃网站。一个障碍是有限的知识所需的结构活性关系设计有针对性的催化剂。Cr-Mn-Fe-Co-Ni纳米粒子的磁控管溅射康托尔高熵合金的目标同时离子液体库。合成纳米粒子有一个狭窄的大小分布,但不同大小(从1.3 + / -0.1到2.6 + / - 0.3 nm),不同结晶度(无定形,面心立方或体心立方)和组合(即高Mn versus灯光昏暗Mn content)。复杂的固溶体纳米粒子具有一个前所未有的内在electrocatalytic活动碱性氧气还原反应媒体,他们中的一些人甚至超过了Pt。最高的内在活动获得体心立方纳米粒子与低锰和铁合成使用的内容离子液体1-etyl-3-methylimidazolium直到——trifluoromethylsulfonyl imide[Emimi] [(Tf) (2) N]。

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