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首页> 外文期刊>Angewandte Chemie >Realization of Walnut-Shaped Particles with Macro-/Mesoporous Open Channels through Pore Architecture Manipulation and Their Use in Electrocatalytic Oxygen Reduction
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Realization of Walnut-Shaped Particles with Macro-/Mesoporous Open Channels through Pore Architecture Manipulation and Their Use in Electrocatalytic Oxygen Reduction

机译:通过孔架构操纵实现宏观/介孔开放通道的核桃形颗粒及其在电催化氧还原中的应用

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摘要

Herein we report a simple dual-soft-template approach to prepare walnut-shaped macro-/mesoporous polydopamine particles with diameter of ca. 270 nm, highly accessible bicontinuous channels and wide pore size distribution from ca. 20 nm to ca. 95 nm. This approach provides great opportunities to tailor the soft template-directed assembly processes and generate various polydopamine particles with controllable mesophase curvature. Walnut-shaped mesoporous carbon particles with large open mesochannels in the range of ca. 13 nm to ca. 50 nm can be fabricated by subsequent thermal treatment under nitrogen atmosphere. Lastly, we demonstrate that the as-derived walnut-shaped carbon particles manifest enhanced electrocatalytic performance for oxygen reduction reaction in alkaline electrolyte.
机译:在此,我们报告了一种简单的双软模板方法,以制备具有直径的核桃形宏观/介孔多DoPamine颗粒。 270nm,高度可访问的双周末通道和来自CA的宽孔径分布。 20 nm到ca. 95 nm。 该方法提供了定制软模板定向的组装过程的巨大机会,并产生具有可控中间相曲率的各种多碳胺颗粒。 核桃形介孔碳颗粒,具有大型开放间接在Ca的范围内。 13 nm到ca. 通过在氮气氛下随后的热处理可以制造50nm。 最后,我们证明了碱性电解质中氧还原反应的氧化核形状碳颗粒表现出的氧化催化性能。

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