Self-activated superhydrophilic green ZnIn<sub>2</sub>S<sub>4</sub> realizing solar-driven overall water splitting:close-to-unity stability for a full daytime

  • Chong, Wei Kean
  • Ng, Boon Junn
  • Lee, Yong Jieh
  • Tan, Lling Lling
  • Putri, Lutfi Kurnianditia
  • Low, Jingxiang
  • Mohamed, Abdul Rahman
  • Chai, Siang Piao
Publication date
November 2023

Abstract

Engineering an efficient semiconductor to sustainably produce green hydrogen via solar-driven water splitting is one of the cutting-edge strategies for carbon-neutral energy ecosystem. Herein, a superhydrophilic green hollow ZnIn2S4 (gZIS) was fabricated to realize unassisted photocatalytic overall water splitting. The hollow hierarchical framework benefits exposure of intrinsically active facets and activates inert basal planes. The superhydrophilic nature of gZIS promotes intense surface water molecule interactions. The presence of vacancies within gZIS facilitates photon energy utilization and charge transfer. Systematic theoretical computations signify the defect-induced charge redistribution of gZIS enhancing water activation and reduc...

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