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Platinum/Platinum Sulfide on Sulfur-Doped Carbon Nanosheets with Multiple Interfaces Toward High Hydrogen Evolution Activity

Overview
Journal Molecules
Publisher MDPI
Specialty Biology
Date 2024 Oct 16
PMID 39407500
Authors
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Abstract

Platinum (Pt)-based materials are among the most competitive electrocatalysts for the hydrogen evolution reaction (HER) due to suitable hydrogen adsorption energy. Due to the rarity of Pt, it is desirable to develop cost-effective Pt-based electrocatalysts with low Pt loading. Herein, Pt/PtS electrocatalysts on S-doped carbon nanofilms (PPS/C) have been successfully fabricated through a precursor reduction route with a complex of Pt and 1-dodecanethiol (1-DDT) as the precursor. The PPS/C achieved at 400 °C (PPS/C-400) exhibits excellent HER performances with an ultralow overpotential of 41.3 mV, a low Tafel slope of 43.1 mV dec at a current density of 10 mA cm, and a long-term stability of 10 h, superior to many recently reported Pt-based HER electrocatalysts. More importantly, PPS/C-400 shows a high mass-specific activity of 0.362 A mg at 30 mV, which is 1.88 times of that of commercial 20% Pt/C (0.193 A mg). The introduction of sulfur leads to the formation of PtS, which not only reduces the content of Pt but also realizes the interface regulation of Pt/PtS, as well as the doping of carbon. Both regulations make the resulting catalyst have abundant active centers and rapid electron transfer/transport, which is conducive to balancing the adsorption and resolution of intermediate products, and finally achieving great mass-specific activity and stability. The research work may provide ideas for designing effective Pt-based multi-interface electrocatalysts.

References
1.
Kuang P, Wang Y, Zhu B, Xia F, Tung C, Wu J . Pt Single Atoms Supported on N-Doped Mesoporous Hollow Carbon Spheres with Enhanced Electrocatalytic H -Evolution Activity. Adv Mater. 2021; 33(18):e2008599. DOI: 10.1002/adma.202008599. View

2.
Ling Zhou K, Wang Z, Han C, Ke X, Wang C, Jin Y . Platinum single-atom catalyst coupled with transition metal/metal oxide heterostructure for accelerating alkaline hydrogen evolution reaction. Nat Commun. 2021; 12(1):3783. PMC: 8213696. DOI: 10.1038/s41467-021-24079-8. View

3.
Sun L, Li Q, Zhang S, Xu D, Xue Z, Su H . Heterojunction-Based Electron Donators to Stabilize and Activate Ultrafine Pt Nanoparticles for Efficient Hydrogen Atom Dissociation and Gas Evolution. Angew Chem Int Ed Engl. 2021; 60(49):25766-25770. DOI: 10.1002/anie.202111920. View

4.
Seh Z, Kibsgaard J, Dickens C, Chorkendorff I, Norskov J, Jaramillo T . Combining theory and experiment in electrocatalysis: Insights into materials design. Science. 2017; 355(6321). DOI: 10.1126/science.aad4998. View

5.
Bai S, Wang C, Deng M, Gong M, Bai Y, Jiang J . Surface polarization matters: enhancing the hydrogen-evolution reaction by shrinking Pt shells in Pt-Pd-graphene stack structures. Angew Chem Int Ed Engl. 2014; 53(45):12120-4. DOI: 10.1002/anie.201406468. View