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首页> 外文期刊>Catalysis science & technology >The role of catalyst-support interactions in oxygen evolution anodes based on Co(OH)(2) nanoparticles and carbon microfibers
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The role of catalyst-support interactions in oxygen evolution anodes based on Co(OH)(2) nanoparticles and carbon microfibers

机译:催化剂载体的角色互动析氧阳极基于有限公司(OH) (2)纳米颗粒和碳超细纤维

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The performance of OER anodes based on supported nanocatalysts is highly dependent on the interactions taking place at the interface between the nanocatalyst and the employed conductive support. Herein, the versatility offered by the organometallic approach for the synthesis of metal-based nanostructures allowed preparing electrodes of tailored nanocatalyst-support interactions. A set of OER working electrodes based on CoOH)(2) nanoparticles (NPs) and carbon microfibers (CFs) were prepared. The so-obtained systems differ in either the stabilizer present at the surface of the NPs (THF or 1-heptanol), the surface functionalization of the used CFs (bare CFs or oxidized-CFs) or the growth of the NPs in the presence (in situ) or the absence (ex situ) of the carbonaceous support. Correlation of a detailed structural and compositional analysis with the electroactivity of the tested nanomaterials allows extracting valuable insights about the influence of the metal-support interface on the OER performance of the studied anodes.
机译:根据支持OER阳极的性能nanocatalysts高度依赖在界面的交互nanocatalyst和就业导电的支持。提供的有机金属的方法金属纳米结构的合成制备电极的定制nanocatalyst-support交互。工作电极基于羧基)(2)纳米颗粒(NPs)和碳超细纤维(CFs)都准备好了。稳定器出席的表面NPs(四氢呋喃或1-heptanol),表面功能化的慢性疲劳综合症(CFs裸露的或使用oxidized-CFs)或NPs的增长存在(原位)或没有(非原位)含碳的支持。详细的结构和成分分析electroactivity的测试纳米材料允许提取有价值的见解金属支架的影响界面上的OER性能进行了研究阳极。

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