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Interfacial Synthesis of Cs2PtCl6 Perovskite for Strong Coupling with V4C3Tx MXene Toward Efficient Hydrogen
Punnoli Muhsin1, Neermunda Shabana1, Chi-Chi Wu1
1Department of Chemistry, National Taiwan University, Taipei, 10617, Taiwan.
Abstract:
A key innovation in this work is the development of a trapping method to synthesize perovskite Cs2PtCl6 nanoparticles at a liquid-liquid interface under ambient conditions. The resulting nanoscale Cs2PtCl6 particles are able to combine with various MXenes via PtCl6 2- units, among which V4C3TX MXene forms strongly coupled Cs2PtCl6@V4C3TX composites. Cs2PtCl6@V4C3TX exhibits excellent hydrogen evolution reaction (HER), delivering a dramatically reduced overpotential of ∼39 mV a current density of 10 mA cm- 2, which outperforms the pristine V4C3TX, Cs2PtCl6, and other Cs2PtCl6@MXenes composites investigated. On the other hand, Cs2PtCl6@V4C3TX exhibits negligible oxygen evolution reaction, but remarkably high-performance urea oxidation reaction. The selective anodic reactivity simultaneously reduces the overall energy input required for HER. Comprehensive studies with other MXenes and their Cs2PtCl6 hybrids highlight the unique and critical role of V4C3TX in facilitating electron transfer and catalytic stability, paving the way for simultaneous production of clean energy and remediation of organic pollutants.
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