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May 8, 2026Nature Synthesis2 citationsOpen Access

Preparation of single-chain one-dimensional van der Waals materials

PZPengxin ZhanHWHao WuPYPeilin Yang

Key Points

  • This research aims to prepare and characterize single-chain one-dimensional van der Waals materials for potential applications in electronic devices.
  • Prepared independent single-chain 1D van der Waals crystals with specific chemical structures.
  • Characterized the crystals regarding their structural dimensions and chemical composition.
  • Conducted low temperature electron transport measurements to analyze tunnelling characteristics.
  • Achieved single-chain ratio up to 90% with crystal dimensions of approximately 0.8 nm in width and micrometre scale in length.
  • Observed atomically smooth van der Waals interfaces and high crystal quality with air stability.
  • Demonstrated typical single-electron tunnelling characteristics through low temperature measurements, indicating feasibility for quantum technology applications.

Abstract

Abstract Graphene and other single-layer two-dimensional van der Waals (vdW) crystals have been of great research interest for the past two decades, demonstrating the possible interest for research on single-chain one-dimensional (1D) vdW materials. Furthermore, 1D vdW materials are predicted to have interesting physics and find applications in subnanometre electronic devices, as their sizes in both dimensions are close to physical limits. Here we prepared independent, single-chain 1D vdW crystals in which the single chains feature a definite chemical structure with a width of approximately 0.8 nm, a length reaching the micrometre scale and a single-chain ratio up to 90%. Atomically smooth vdW interfaces resulting from the inherent intrachain closed covalent bonding were observed, accompanied by good crystal quality and air stability. Low temperature electron transport measurements of the 1D vdW chains revealed typical single-electron tunnelling characteristics, demonstrating the possible applications of these materials in quantum technologies.

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Cite This Study

Zhan et al. (2026) studied this question.

synapsesocial.com/papers/69fd7fcdbfa21ec5bbf08593https://doi.org/10.1038/s44160-026-01071-y
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