4.8 Article

Synergistically Improved Electronic and Thermal Transport Properties in Nb-Doped NbyMo1-ySe2-2xTe2x Solid Solutions Due to Alloy Phonon Scattering and Increased Valley Degeneracy

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 11, Issue 29, Pages 26069-26081

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.9b03681

Keywords

MoSe2-2xTe2x solid solutions; Nb doping; alloy scattering; valley degeneracy; thermoelectric

Funding

  1. National Key Research and Development Program of China [2018YFB0703600]
  2. Natural Science Foundation of China [51702246, 51632006]
  3. Fundamental Research Funds for the Central Universities [WUT: 2017IVA097, 2018IVB032, 2018III043GX, 2018III046GX]
  4. National students innovation and entrepreneurship training program [201810497019]
  5. VASP 5.4.1 of National Supercomputing Center in Shenzhen

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The layered 2H-MoSe2-based compounds have recently attracted considerable attention as novel thermoelectric (TE) materials for medium-to-high temperature power generation. In this research, for the first time, dissolving Te in binary MoSe2 and thus forming MoSe2_2xTe2x solid solutions is shown to be very effective for reducing lattice thermal conductivity (KL) due to strong alloy scattering of phonons. Along the IP direction, MoSeL2Te0.8 achieves the lowest xL of 2.87 W m-1 K-1 at room temperature among all solid solutions, an 8S% decrease from that of pristine MoSe2 (18.69 W K-1). Band structure calculations and experiments have verified that Te alloying effectively increases the density-of-states effective mass of MoSe2_2;Te2,, solid solutions via increased valley degeneracy, leading to an enhanced Seebeck coefficient. Moreover, Nb doping modulates the density of holes of NbyMoi_ySe12Te0.8 samples to its optimum level and gives rise to the maximum power factor of 0.85 mW m 1 K-2 at 823 K. On account of synergistic optimization of the electronic and thermal transport, Nbo.osM00.9sSe12Te0.8 has achieved the highest ZT value of 0.34 at 823 K, representing a 70% enhancement as compared to the best result previously reported for MoSe2. This research documents that alloying combined with doping is an effective avenue to greatly enhance the TE performance of NbyMo1_ySe2_2 Te2 solid solutions.

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