Literature DB >> 28177640

Cross-Plane Seebeck Coefficient Measurement of Misfit Layered Compounds (SnSe)n(TiSe2)n (n = 1,3,4,5).

Zhen Li, Sage R Bauers1, Nirakar Poudel, Danielle Hamann1, Xiaoming Wang2,3, David S Choi4, Keivan Esfarjani5, Li Shi4, David C Johnson1, Stephen B Cronin.   

Abstract

We report cross-plane thermoelectric measurements of misfit layered compounds (SnSe)n(TiSe2)n (n = 1,3,4,5), approximately 50 nm thick. Metal resistance thermometers are fabricated on the top and bottom of the (SnSe)n(TiSe2)n material to measure the temperature difference and heat transport through the material directly. By varying the number of layers in a supercell, n, we vary the interface density while maintaining a constant global stoichiometry. The Seebeck coefficient measured across the (SnSe)n(TiSe2)n samples was found to depend strongly on the number of layers in the supercell (n). When n decreases from 5 to 1, the cross-plane Seebeck coefficient decreases from -31 to -2.5 μV/K, while the cross-plane effective thermal conductivity decreases by a factor of 2, due to increased interfacial phonon scattering. The cross-plane Seebeck coefficients of the (SnSe)n(TiSe2)n are very different from the in-plane Seebeck coefficients, which are higher in magnitude and less sensitive to the number of layers in a supercell, n. We believe this difference is due to the different carrier types in the n-SnSe and p-TiSe2 layers and the effect of tunneling on the cross-plane transport.

Keywords:  2D material stack; Intergrowth compounds; Seebeck coefficient; cross-plane

Year:  2017        PMID: 28177640     DOI: 10.1021/acs.nanolett.6b05402

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  2 in total

1.  Thermionic transport across gold-graphene-WSe2 van der Waals heterostructures.

Authors:  Md Golam Rosul; Doeon Lee; David H Olson; Naiming Liu; Xiaoming Wang; Patrick E Hopkins; Kyusang Lee; Mona Zebarjadi
Journal:  Sci Adv       Date:  2019-11-08       Impact factor: 14.136

2.  Nanotubes from the Misfit Layered Compound (SmS)1.19TaS2: Atomic Structure, Charge Transfer, and Electrical Properties.

Authors:  M B Sreedhara; Kristýna Bukvišová; Azat Khadiev; Daniel Citterberg; Hagai Cohen; Viktor Balema; Arjun K Pathak; Dmitri Novikov; Gregory Leitus; Ifat Kaplan-Ashiri; Miroslav Kolíbal; Andrey N Enyashin; Lothar Houben; Reshef Tenne
Journal:  Chem Mater       Date:  2022-02-10       Impact factor: 9.811

  2 in total

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