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Synergistic Amplification of Oxygen Generation in (Photo)Catalytic Water Splitting by a PEDOT/Nano-Co3O4/MWCNT Thin Film Composite

机译:铅/纳米CO3O4 / MWCNT薄膜复合材料(Photo)催化水分裂氧气产生的协同扩增

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摘要

Amplifying catalysis by thoughtful exploitation of synergistic effects with interacting supports is a new field of potentially great significance. It is particularly relevant for solar-assisted reactions that are currently too poorly catalyzed to be practically viable, such as photoelectrochemical splitting of water to produce hydrogen and oxygen. In this work we describe synergistic amplification of water oxidation photoelectrocatalysis by the use of a thin layer electroactive polymer support. Coating of a bare Pt surface with a 0.98 mu m thick film of poly(3,4-ethylene-dioxythiophene) (PEDOT) containing a specific molar ratio of nano-Co3O4 (a water oxidation catalyst) and multi-wall carbon nanotubes (oxidatively stable conductors) synergistically amplifies its rate of water oxidation catalysis by 15-fold (under the most oxidizing conditions that can be applied to PEDOT without degradation; with light illumination of 0.25 sun). To the best of our knowledge, this film is the most active water oxidation catalyst yet reported under near-neutral (pH 12) conditions as a proportion of the activity of Pt, which is the industry-standard catalyst of the reaction.
机译:通过周到开发协同效应与交互支持的协同效应放大催化是一种潜在重要的新领域。它与太阳能辅助的反应特别相关,目前催化太差,催化得很差,例如可行的水,例如光电化学分裂以产生氢和氧。在这项工作中,我们通过使用薄层电活性聚合物载体来描述水氧化光电二零的协同扩增。含有0.98μm的聚(3,4-乙烯 - 二氧噻吩)(PEDOT)薄膜涂覆纳米CO3O4(水氧化催化剂)和多壁碳纳米管的特定摩尔比(氧化稳定的导体)通过15倍的(在最大氧化条件下可以施加到没有降解的铅托的最氧化条件下,协同放大其水氧化催化率;光照照明0.25℃)。据我们所知,该薄膜是最活跃的水氧化催化剂,尚未在近中性(pH12)条件下报道,作为PT活性的比例,这是反应的行业标准催化剂。

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