S vacancies and heterojunction modulated MoS2/C@Fe3O4 towards improved full-spectrum photo-Fenton catalysis: Enhanced interfacial charge transfer and NIR absorption - ScienceDirect
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S vacancies and heterojunction modulated MoS2/C@Fe3O4 towards improved full-spectrum photo-Fenton catalysis: Enhanced interfacial charge transfer and NIR absorption - ScienceDirect,Mitigating abiotic stress: microbiome engineering for improving agricultural production and environmental sustainability | Planta,S vacancies and heterojunction modulated MoS2/C@Fe3O4 towards improved full-spectrum photo-Fenton catalysis: Enhanced interfacial charge transfer and NIR absorption - ScienceDirect,S vacancies and heterojunction modulated MoS2/C@Fe3O4 towards improved full-spectrum photo-Fenton catalysis: Enhanced interfacial charge transfer and NIR absorption - ScienceDirect,Electric-Field Effects on Ionic Hydration: A Molecular Dynamics Study | The Journal of Physical Chemistry B