Litcius/Paper detail

Critical Role of Phosphorus in Hollow Structures Cobalt‐Based Phosphides as Bifunctional Catalysts for Water Splitting

Wei Zhang, Ning Han, Jiangshui Luo, Xu Han, Shihui Feng, Wei Guo, Sijie Xie, Zhenyu Zhou, Palaniappan Subramanian, Kai Wan, Jordi Arbiol, Chi Zhang, Shaomin Liu, Maowen Xu, Xuan Zhang, Jan Fransaer

2021Small112 citationsDOIOpen Access PDF

Abstract

Abstract Cobalt phosphides electrocatalysts have great potential for water splitting, but the unclear active sides hinder the further development of cobalt phosphides. Wherein, three different cobalt phosphides with the same hollow structure morphology (CoP‐HS, CoP 2 ‐HS, CoP 3 ‐HS) based on the same sacrificial template of ZIF‐67 are prepared. Surprisingly, these cobalt phosphides exhibit similar OER performances but quite different HER performances. The identical OER performance of these CoP x ‐HS in alkaline solution is attributed to the similar surface reconstruction to CoOOH. CoP‐HS exhibits the best catalytic activity for HER among these CoP x ‐HS in both acidic and alkaline media, originating from the adjusted electronic density of phosphorus to affect absorption–desorption process on H. Moreover, the calculated Δ G H* based on P‐sites of CoP‐HS follows a quite similar trend with the normalized overpotential and Tafel slope, indicating the important role of P‐sites for the HER process. Moreover, CoP‐HS displays good performance (cell voltage of 1.67 V at a current density of 50 mA cm −2 ) and high stability in 1 M KOH. For the first time, this work detailly presents the critical role of phosphorus in cobalt‐based phosphides for water splitting, which provides the guidance for future investigations on transition metal phosphides from material design to mechanism understanding.

Topics & Concepts

OverpotentialTafel equationCobaltWater splittingCatalysisTransition metalMaterials scienceChemical engineeringPhosphorusDesorptionInorganic chemistryChemistryNanotechnologyElectrochemistryMetallurgyPhysical chemistryAdsorptionElectrodePhotocatalysisEngineeringBiochemistryElectrocatalysts for Energy ConversionAdvanced Photocatalysis TechniquesAdvanced Memory and Neural Computing