Design of 2D Layered Catalyst by Coherent Heteroepitaxial Conversion for Robust Hydrogen Generation

  • Sim, Yeoseon
  • Yoon, Aram
  • Kang, Hee Seong
  • Kwak, Jinsung
  • Kim, Se-Yang
  • ... Cheong, Hyeonsik
  • 외 13명
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초록

The structural engineering of 2D layered materials is emerging as a powerful strategy to design catalysts for high-performance hydrogen evolution reaction (HER). However, the ultimate test of this technology under typical operating settings lies in the reduced performance and the shortened lifespan of these catalysts. Here, a novel approach is proposed to design efficient and robust HER catalysts through out-of-plane deformation of 2D heterojunction using metal-organic chemical vapor deposition. High-yield, single-crystalline WTe2 nanobelts are used as an epitaxial template for their coherent conversion to WS2. During the conversion process, the WTe2/WS2 heterostructure containing both lateral and vertical junctions are achieved by coherent heteroepitaxial stacking despite differences in symmetry. The lattice coherency drives out-of-plane deformation of heteroepitaxially grown WS2. The increase in the effective surface area and decrease in the electron-transfer resistance across the 2D heterojunctions in turn enhances the HER performance as well as the long-term durability of these electrocatalysts.

키워드

2D heterojunctionsatomic&#8208scale engineeringcoherent heteroepitaxial conversionhydrogen evolution reactionmetal&#8208organic chemical vapor depositionACTIVE EDGE SITESELECTRONIC-STRUCTURESEVOLUTION REACTIONMOS2STRAINWS2MOLYBDENUMNANOSHEETSGRAPHENESULFUR
제목
Design of 2D Layered Catalyst by Coherent Heteroepitaxial Conversion for Robust Hydrogen Generation
저자
Sim, YeoseonYoon, AramKang, Hee SeongKwak, JinsungKim, Se-YangJo, YongsuChoe, DaeseongNa, WoongkiLee, Min HeePark, Soon-DongSong, SeungukKim, DaeyongYoo, Jung-WooKim, Sung YoubCheong, HyeonsikLee, Jae SungLee, Chul-HoLee, ZonghoonKwon, Soon-Yong
DOI
10.1002/adfm.202005449
발행일
2021-02
유형
Article
저널명
Advanced Materials for Optics and Electronics
31
9