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Ni1−xCoxSe2-C/ZnIn2S4 Hybrid Nanocages with Strong 2D/2D Hetero-Interface Interaction Enable Efficient H2-Releasing Photocatalysis

  • Yuguang Chao
  • , Peng Zhou
  • , Jianping Lai
  • , Weiyu Zhang
  • , Huawei Yang
  • , Shiyu Lu
  • , Hui Chen
  • , Kun Yin
  • , Menggang Li
  • , Lu Tao
  • , Changshuai Shang
  • , Meiping Tong
  • , Shaojun Guo*
  • *Corresponding author for this work
  • Peking University
  • Qingdao University of Science and Technology
  • Ludong University

Research output: Contribution to journalArticlepeer-review

Abstract

Designing a semiconductor-based heterostructure photocatalyst for achieving the efficient separation of photogenerated electron-hole pairs is highly important for enhancing H2 releasing photocatalysis. Here, a new class of Ni1−xCoxSe2–C/ZnIn2S4 hierarchical nanocages with abundant and compact ZnIn2S4 nanosheets/Ni1−xCoxSe2-C nanosheets 2D/2D hetero–interfaces, is designed and synthesized. The constructed heterostructure photocatalyst exposes rich hetero-junctions, supplying the broad and short transfer paths for charge carriers. The close contacts of these two kinds of nanosheets induce a strong interaction between ZnIn2S4 and Ni1−xCoxSe2-C, improving the separation and transfer of photo-generated electron-hole pairs. As a consequence, the distinctive Ni1−xCoxSe2-C/ZnIn2S4 hierarchical nanocages without using additional noble-metal cocatalysts, display remarkable H2-relaesing photocatalytic activity with a rate of 5.10 mmol g−1 h−1 under visible light irradiation, which is 6.2 and 30 times higher than those of fresh ZnIn2S4 nanosheets and bare Ni1−xCoxSe2-C nanocages, respectively. Spectroscopic characterizations and theory calculations reveal that the strong interaction between ZnIn2S4 and Ni1−xCoxSe2-C 2D/2D hetero-interfaces can powerfully promote the separation of photo-generated charge carriers and the electrons transfer from ZnIn2S4 to Ni1−xCoxSe2-C.

Original languageEnglish
Article number2100923
JournalAdvanced Functional Materials
Volume31
Issue number24
DOIs
StatePublished - 9 Jun 2021
Externally publishedYes

Keywords

  • ZnIn S nanosheets
  • hetero-interface
  • nanocages
  • photocatalysis

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