首页|Revealing interfacial charge redistribution of homologous Ru-RuS2 heterostructure toward robust hydrogen oxidation reaction

Revealing interfacial charge redistribution of homologous Ru-RuS2 heterostructure toward robust hydrogen oxidation reaction

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Precisely tailoring the surface electronic structures of electrocatalysts for optimal hydrogen binding energy and hydroxide binding energy is vital to improve the sluggish kinetics of hydrogen oxidation reac-tion(HOR).Herein,we employ a partial desulfurization strategy to construct a homologous Ru-RuS2 heterostructure anchored on hollow mesoporous carbon nanospheres(Ru-RuS2@C).The disparate work functions of the heterostructure contribute to the spontaneous formation of a unique built-in electric field,accelerating charge transfer and boosting conductivity of electrocatalyst.Consequently,Ru-RuS2@C exhibits robust HOR electrocatalytic activity,achieving an exchange current density and mass activity as high as 3.56 mA cm-2 and 2.13 mA μgRu-1,respectively,exceeding those of state-of-the-art Pt/C and most contemporary Ru-based HOR electrocatalysts.Surprisingly,Ru-RuS2@C can tolerate 1000 ppm of CO that lacks in Pt/C.Comprehensive analysis reveals that the directional electron transfer across Ru-RuS2 heterointerface induces local charge redistribution in interfacial region,which optimizes and balances the adsorption energies of H and OH species,as well as lowers the energy barrier for water formation,thereby promoting the HOR performance.

HeterostructureHollow spherical structureHydrogen oxidation reactionCharge redistributionDensity functional calculation

Yi Liu、Lianrui Cheng、Shuqing Zhou、Yuting Yang、Chenggong Niu、Tayirjan Taylor Isimjan、Bao Wang、Xiulin Yang

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Guangxi Key Laboratory of Low Carbon Energy Materials,School of Chemistry and Pharmaceutical Sciences,Guangxi Normal University,Guilin 541004,Guangxi,China

Saudi Arabia Basic Industries Corporation(SABIC)at King Abdullah University of Science and Technology(KAUST),Thuwal 23955-6900,Saudi Arabia

State Key Laboratory of Biochemical Engineering,Institute of Process Engineering,Chinese Academy of Sciences,Beijing 100190,China

National Natural Science Foundation of ChinaNatural Science Foundation of Guangxi ProvinceGuangxi Technology Base and Talent SubjectGuangxi Technology Base and Talent Subject

523630282021GXNSFAA076001GUIKEAD23023004GUIKE AD20297039

2024

能源化学
中国科学院大连化学物理研究所 中国科学院成都有机化学研究所

能源化学

CSTPCDEI
影响因子:0.654
ISSN:2095-4956
年,卷(期):2024.94(7)