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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Amorphous outperforms crystalline nanomaterials: surface modifications of molecularly derived CoP electro(pre)catalysts for efficient water-splitting
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Amorphous outperforms crystalline nanomaterials: surface modifications of molecularly derived CoP electro(pre)catalysts for efficient water-splitting

机译:无定形优于结晶纳米材料:分子衍生的CoP电催化剂的表面改性,用于有效的水分裂

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摘要

The single source precursor (SSP) approach was used to prepare highly active CoP bifunctional electro(pre)catalysts for the oxygen evolution reaction (OER), hydrogen evolution reaction (HER) and overall water splitting (OWS) reaction starting from a molecular beta-diketiminato Co(i) cyclo-P-4 complex. Crystalline or amorphous CoP particles were attained depending on the preparation route. Notably, the amorphous CoP displayed higher activity compared to the crystalline CoP on nickel foam (NF) and fluorinated tin oxide (FTO) substrates due to its unique electronic properties and surface characteristics. During the OER, severe oxidation to Co-oxy(hydroxides)/oxides by the loss of P was found to be crucial to increase the concentration of CoOx active sites. Interestingly, complete leaching of surface P from CoP and surface Co enrichment occurred during the HER. Finally, an OWS device was fabricated where the amorphous CoP outperformed the crystalline CoP with respect to low OWS cell voltage (with a difference of 130 mV) and enhanced stability for 5 days.
机译:单源前体(SSP)方法用于制备高活性COP双官能电催化剂(PRE)催化剂,用于从分子β-开始的氧进化反应(oer),氢进化反应(ey)和整个水分裂(OWS)反应。 Diketiminato Co(i)Cyclo-P-4复合物。取决于制备途径,实现了结晶或无定形COP颗粒。值得注意的是,由于其独特的电子性质和表面特性,与镍泡沫(NF)上的结晶COP和氟化锡(FTO)基材相比,无定形COP显示出更高的活性。在伊尔期间,发现通过丧失P丧失P中的共同氧化(氢氧化物)/氧化物是至关重要的,以增加COOO活性位点的浓度。有趣的是,在她的情况下,从COP和Surface Co Richment完全浸出表面P.最后,制造了一个OWS器件,其中非晶警察相对于低磁孔电池电压(具有130mV差异)并增强稳定性5天。

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