Research paperReviewTheoreticalReview on thermoelectric properties of transition metal dichalcogenidesI. Pallecchi, N. Manca, B. Patil, L. Pellegrino et al.2000·10.1088/2399-1984/ab92f4·arXiv:2502.12038AbstractTransition metal dichalcogenides (TMDs) are considered an advantageous alternative to graphene for applications requiring a gapped and tunable band structure. This review surveys experimental literature on thermoelectric properties of TMDs and related materials, and discusses theoretical predictions for thermoelectric performance, including the effects of confinement, doping, off-stoichiometry, and sample form.Read more
Research paperReviewTheoreticalReview on thermoelectric properties of transition metal dichalcogenidesI. Pallecchi, N. Manca, B. Patil, L. Pellegrino et al.2000·10.1088/2399-1984/ab92f4·arXiv:2502.12038AbstractTransition metal dichalcogenides (TMDs) are considered an advantageous alternative to graphene for applications requiring a gapped and tunable band structure. This review surveys experimental literature on thermoelectric properties of TMDs and related materials, and discusses theoretical predictions for thermoelectric performance, including the effects of confinement, doping, off-stoichiometry, and sample form.Read more
Research paperReviewTheoreticalReview on thermoelectric properties of transition metal dichalcogenidesI. Pallecchi, N. Manca, B. Patil, L. Pellegrino et al.2000·10.1088/2399-1984/ab92f4·arXiv:2502.12038AbstractTransition metal dichalcogenides (TMDs) are considered an advantageous alternative to graphene for applications requiring a gapped and tunable band structure. This review surveys experimental literature on thermoelectric properties of TMDs and related materials, and discusses theoretical predictions for thermoelectric performance, including the effects of confinement, doping, off-stoichiometry, and sample form.Read more
Research paperReviewTheoreticalReview on thermoelectric properties of transition metal dichalcogenidesI. Pallecchi, N. Manca, B. Patil, L. Pellegrino et al.2000·10.1088/2399-1984/ab92f4·arXiv:2502.12038AbstractTransition metal dichalcogenides (TMDs) are considered an advantageous alternative to graphene for applications requiring a gapped and tunable band structure. This review surveys experimental literature on thermoelectric properties of TMDs and related materials, and discusses theoretical predictions for thermoelectric performance, including the effects of confinement, doping, off-stoichiometry, and sample form.Read more