Nanomaterials (Jun 2021)

Efficient ReSe<sub>2</sub> Photodetectors with CVD Single-Crystal Graphene Contacts

  • Bruna Silva,
  • João Rodrigues,
  • Balaji Sompalle,
  • Chun-Da Liao,
  • Nicoleta Nicoara,
  • Jérôme Borme,
  • Fátima Cerqueira,
  • Marcel Claro,
  • Sascha Sadewasser,
  • Pedro Alpuim,
  • Andrea Capasso

DOI
https://doi.org/10.3390/nano11071650
Journal volume & issue
Vol. 11, no. 7
p. 1650

Abstract

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Rhenium-based 2D transition metal dichalcogenides such as ReSe2 are suitable candidates as photoactive materials for optoelectronic devices. Here, photodetectors based on mechanically exfoliated ReSe2 crystals were fabricated using chemical vapor deposited (CVD) graphene single-crystal (GSC) as lateral contacts. A “pick & place” method was adopted to transfer the desired crystals to the intended position, easing the device fabrication while reducing potential contaminations. A similar device with Au was fabricated to compare contacts’ performance. Lastly, a CVD hexagonal boron nitride (hBN) substrate passivation layer was designed and introduced in the device architecture. Raman spectroscopy was carried out to evaluate the device materials’ structural and electronic properties. Kelvin probe force measurements were done to calculate the materials’ work function, measuring a minimal Schottky barrier height for the GSC/ReSe2 contact (0.06 eV). Regarding the electrical performance, I-V curves showed sizable currents in the GSC/ReSe2 devices in the dark and under illumination. The devices presented high photocurrent and responsivity, along with an external quantum efficiency greatly exceeding 100%, confirming the non-blocking nature of the GSC contacts at high bias voltage (above 2 V). When introducing the hBN passivation layer, the device under white light reached a photo-to-dark current ratio up to 106.

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