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Single Pt atoms stabilized on Mo2TiC2O2 for hydrogen evolution: A first-principles investigation

机译:单Pt原子稳定在Mo2TIC2O2上进行氢化:一项调查

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Single-atom catalysis offers an effective way to reduce the amount of used noble metals and maximizes their catalytic activity. We systematically explore electrocatalytic performances of Pt doped Mo2TiC2O2 monolayer by the first principles calculations. Our results show that the presence of donor defects in Mo2TiC2O2 can always increase the reaction free energy of hydrogen adsorption and further promotes the performance in hydrogen evolution reaction (HER). More interestingly, the substitution of Pt for O in the Mo2TiC2 can modify the free energy to an ideal value and is responsible for the significantly enhanced catalytic activity. Furthermore, the large value of diffusion barrier indicates that single Pt atoms can be stabilized onto the O vacancy sites, which can effectively prevent them to aggregate into nanoparticles. Our works are useful for understanding the recent experimental observations and pave the way for further experimental improvements of catalytic activity for the HER. Published under license by AIP Publishing.
机译:单原子催化提供了减少二手贵金属量的有效方法,并最大化其催化活性。我们通过第一个原理计算系统地探索PT掺杂MO2TIC2O2单层的电催化性能。我们的研究结果表明,Mo2TIC2O2中供体缺陷的存在可以始终增加氢吸附的无反应能量,进一步促进氢进化反应(她)的性能。更有意义地,在MO2TIC2中的o取代o的替代物可以将自由能量改性为理想值,并负责显着增强的催化活性。此外,扩散屏障的大值表明单个Pt原子可以稳定在o空位位点上,这可以有效地防止它们聚集成纳米颗粒。我们的作品可用于理解最近的实验观察,并为进一步的实验改善她的催化活性进行进一步的实验性。通过AIP发布在许可证下发布。

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