Charge Density Waves in Exfoliated Films of van der Waals Materials: Evolution of Raman Spectrum in TiSe<sub>2</sub>
Pradyumna Goli, Javed M. Khan, Darshana Wickramaratne, Roger K. Lake, Alexander A. Balandin
University of California, Riverside
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A number of the charge-density-wave materials reveal a transition to the macroscopic quantum state around 200 K. We used graphene-like mechanical exfoliation of TiSe(2) crystals to prepare a set of films with different thicknesses. The transition temperature to the charge-density-wave state was determined via modification of Raman spectra of TiSe(2) films. It was established that the transition temperature can increase from its bulk value to ~240 K as the thickness of the van der Waals films reduces to the nanometer range. The obtained results are important for the proposed applications of such materials in the collective-state information processing, which require room-temperature operation.
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材料 / 化学2D Materials and Applications
Advanced Thermoelectric Materials and Devices · Organic and Molecular Conductors Research
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