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Core–Shell Prussian Blue Analogs with Compositional Heterogeneity and Open Cages for Oxygen Evolution Reaction

机译:核-壳普鲁士蓝类似物具有组成异质性和开放式笼子用于放氧反应

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摘要

Here, a reduction‐cation exchange (RCE) strategy is proposed for synthesizing Fe–Co based bimetallic Prussian blue analogs (PBAs) with heterogeneous composition distribution and open cage nanocage architecture. Specially, bivalent cobalt is introduced into a potassium ferricyanide solution containing hydrochloric acid and polyvinyl pyrrolidone. The uniform PBAs with opened cages are formed tardily after hydrothermal reaction. Time‐dependent evolution characterization on composition elucidating the RCE mechanism is based on the sequential reduction of ferric iron and cation exchange reaction between divalent iron and cobalt. The PBA structures are confirmed by electron tomography technology, and the heterogeneous element distribution is verified by energy‐dispersive X‐ray spectroscopy elemental analysis, leading to the formation of core–shell PBAs with compositional heterogeneity (Fe rich shell and Co rich core) and open cage architecture. When the PBA catalysts are used to boost the oxygen evolution reaction (OER), superior OER activity and long‐term stability (low overpotential of 271 mV at 10 mA cm−2 and ≈5.3% potential increase for 24 h) are achieved, which is attributed to the unique compositional and structural properties as well as high special surface areas (576.2 m2 g−1). The strategies offer insights for developing PBAs with compositional and structural multiplicity, which encourages more practical catalytic applications.
机译:在这里,提出了一种还原阳离子交换(RCE)策略,用于合成具有异质成分分布和开笼式纳米笼结构的基于Fe-Co的双金属普鲁士蓝类似物(PBA)。特别地,将二价钴引入到包含盐酸和聚乙烯吡咯烷酮的铁氰化钾溶液中。在水热反应后,迟缓地形成了具有开放式保持架的均匀PBA。阐明RCE机理的成分随时间变化的演化特征是基于三价铁的顺序还原以及二价铁与钴之间的阳离子交换反应。通过电子断层扫描技术确认了PBA的结构,并通过能量色散X射线光谱元素分析验证了异质元素的分布,从而形成了具有成分异质性(富铁壳和富钴核)的核-壳型PBA。开放式笼式结构。当使用PBA催化剂促进氧气释放反应(OER)时,优异的OER活性和长期稳定性(在10 mA cm -2 下低271 mV的超电势和≈5.3%的电势增加)达到了24 h),这归因于独特的成分和结构特性以及高比表面积(576.2 m 2 g -1 )。该策略为开发具有组成和结构多样性的PBA提供了见识,这鼓励了更实际的催化应用。

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