DOE OSTI · 1761686
Atomically Precise PdSe 2 Pentagonal Nanoribbons
Abstract
We report atomically precise pentagonal PdSe 2 nanoribbons (PNRs) fabricated on a pristine PdSe 2 substrate with a hybrid method of top-down and bottom-up processes. The PNRs form a uniform array of dimer structure with a width of 2.4 nm and length of more than 200 nm. In situ four-probe scanning tunneling microscopy (STM) reveals metallic behavior of PNRs with ballistic transport for at least 20 nm in length. Density functional theory calculations produce a semiconducting density of states of isolated PNRs and find that the band gap narrows and disappears quickly once considering coupling between PNR stacking layers or interaction with the PdSe 2 substrate. The coupling of PNRs is further corroborated by Raman spectroscopy and field-effect transistor measurements. The facile method of fabricating atomically precise PNRs offers an air-stable functional material for dimensional control.
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Nguyen, Giang D., Oyedele, Akinola D., Haglund, Amanda, Ko, Wonhee, Liang, Liangbo, Puretzky, Alexander A., Mandrus, David, Xiao, Kai, Li, An-Ping. 2020-02-05. Atomically Precise PdSe 2 Pentagonal Nanoribbons. https://doi.org/10.1021/acsnano.9b08390
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