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Synthesis, Characterization, and Optical Properties of Undoped and Te-Doped W(SxSe(1−x))2 and Core-Shell WS2@W(SxSe(1−x))2 Nanotubes

  • Philip Nathaniel Immanuel
  • , Neena Prasad
  • , Akshay Puravankara
  • , Stepan Kusak
  • , Rita Rosentsveig
  • , Yishay Feldman
  • , Anna Eden-Kossoy
  • , Ifat Kaplan-Ashiri
  • , Vojtech Kundrat
  • , Raul Arenal
  • , Reshef Tenne
  • , Lena Yadgarov

Research output: Contribution to journalArticlepeer-review

Abstract

WS2 nanotubes (NTs) are layered transition-metal dichalcogenides whose diameter strongly influences strain and optical properties. Alloying sulfur with selenium in W(SxSe1−x)2 NTs provides compositional tunability, yet the link between precursor composition, alloy formation, and optical response remains unclear. In this work, W(SxSe1−x)2 (WSSe) NTs with controlled S/Se ratios were synthesized and characterized using Raman spectroscopy, scanning electron microscopy, transmission electron microscopy, STEM-EDS, and X-ray diffraction. The synthesis produced high yields of small-diameter NTs (<30 nm). Compositional analysis revealed sulfur enrichment relative to the nominal precursor ratio, while the interlayer spacing increased from 0.62 to 0.66 nm with increasing selenium content. To examine incorporation of heavier chalcogens, tellurium (Te) was introduced during synthesis. Owing to its larger atomic radius and lower chemical reactivity compared with sulfur and selenium, Te incorporation presents a significant kinetic limitation during NT growth. Elemental analysis shows that Te is incorporated only at trace dopant levels (<1 at%) rather than forming a quaternary alloy phase. Despite this low incorporation, Te doping induces a measurable red shift of the A-exciton transition, indicating a slight reduction in bandgap energy. Core–shell WS2@WSSe NTs were also synthesized, exhibiting nonlinear optical effects. These findings may enable alloyed TMD NTs for nanoscale optoelectronic and photodetection devices.

Original languageEnglish
Article numbere70023
JournalIsrael Journal of Chemistry
Volume66
Issue number4
DOIs
StatePublished - Jul 2026

Keywords

  • Te doping
  • core-shell
  • excitons
  • nanotubes
  • transition-metal dichalcogenides

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