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Active MnOx Electrocatalysts Prepared by Atomic Layer Deposition for Oxygen Evolution and Oxygen Reduction Reactions

机译:原子层沉积制备的活性MnOx电催化剂用于氧气释放和氧还原反应

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摘要

The ability to deposit conformal catalytic thin films enables opportunities to achieve complex nanostructured designs for catalysis. Atomic layer deposition (ALD) is capable of creating conformal thin films over complex substrates. Here, ALD-MnOx on glassy carbon is investigated as a catalyst for the oxygen evolution reaction (OER) and the oxygen reduction reaction (ORR), two reactions that are of growing interest due to their many applications in alternative energy technologies. The films are characterized by X-ray photoelectron spectroscopy, X-ray diffraction, scanning electron microscopy, ellipsometry, and cyclic voltammetry. The as-deposited films consist of Mn(II)O, which is shown to be a poor catalyst for the ORR, but highly active for the OER. By controllably annealing the samples, Mn2O3 catalysts with good activity for both the ORR and OER are synthesized. Hypotheses are presented to explain the large difference in the activity between the MnO and Mn2O3 catalysts for the ORR, but similar activity for the OER, including the effects of surface oxidation under experimental conditions. These catalysts synthesized though ALD compare favorably to the best MnOx catalysts in the literature, demonstrating a viable way to produce highly active, conformal thin films from earth-abundant materials for the ORR and the OER.
机译:沉积保形催化薄膜的能力为实现复杂的纳米结构催化设计提供了机会。原子层沉积(ALD)能够在复杂基板上形成共形薄膜。在此,研究了玻璃碳上的ALD-MnOx作为氧释放反应(OER)和氧还原反应(ORR)的催化剂,这两种反应由于在替代能源技术中的许多应用而引起人们的关注。所述膜通过X射线光电子能谱,X射线衍射,扫描电子显微镜,椭圆光度法和循环伏安法表征。沉积后的薄膜由Mn(II)O组成,Mn(II)O被证明是ORR的不良催化剂,但对OER具有高活性。通过对样品进行可控退火,合成了对ORR和OER均具有良好活性的Mn2O3催化剂。提出了假设来解释MnO和Mn2O3催化剂对ORR的活性差异很大,但对OER的活性相似,包括在实验条件下表面氧化的影响。这些通过ALD合成的催化剂与文献中最好的MnOx催化剂相比具有优势,证明了一种可行的方法可以用富含地球化学物质的ORR和OER生产高活性的保形薄膜。

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