Tailoring electrocatalytic activity of multicomponent (Co,Fe,Ni)9S8-xSex pentlandite solid electrodes - research data
收藏DataCite Commons2024-07-04 更新2024-07-13 收录
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https://agh.rodbuk.pl/citation?persistentId=doi:10.58032/AGH/YUTOP9
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资源简介:
The multicomponent approach to materials design is gaining increasing popularity in energy-conversion-oriented applications. This work describes a 5-component multimetallic chalcogenide compound with a pentlandite structure that recently became increasingly interesting in terms of electrocatalytic water splitting. The solubility limit of Se in the trimetallic Co3Fe3Ni3S8 system was determined along with the potential effect of this additive on the material’s intrinsic properties. This was followed by an unprecedented approach, an attempt to fabricate solid electrodes using the inductive hot-pressing method. The determination of the consolidation conditions on the morphology and final properties of the material is discussed in detail. Both, tailoring the chemical composition and processing conditions (initial grain size, sintering temperature) can lead upon skillful optimization of highly efficient electrocatalysts for water splitting. The best electrodes were characterized at elevated current densities of 120 mA cm-2 showing low overpotentials (240 mV versus RHE), but with rather low electrochemical active surface area and moderately optimal reaction kinetics. It was therefore presented that by applying multicomponent composition granting good intrinsic properties of the materials toward hydrogen production, together with high density and vacancy concentration provided by the sintering process, an efficient electrocatalyst can be obtained using a simple, scalable, and non-involving any additional processing method.
提供机构:
AGH University of Krakow
创建时间:
2024-07-03



