Effects of Unit Cell Size on Thermal Conductivity in Two Different Polymorphs of Niobium Diselenide

  • Park, Sungjin; 
  • Kim, Kyomin; 
  • Kim, Kwangrae; 
  • Lee, Wooyoung; 
  • Soon, Aloysius; 
  • ... Roh, Jong-wook; 
  • 외 1명
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초록

2D materials possess weak inter-layer van der Waals bonding, allowing them to exist as different polymorphs depending on the stacking sequence of the layers. Herein, the thermal conductivities of the 2H-NbSe2 and 2H-3R-NbSe2 polymorphs by conducting experimental measurements and theoretical analysis are comparatively studied. Owing to its 1.8 times larger unit cell, 2H-3R-NbSe2 has a considerably greater number of optical phonon branches than does 2H-NbSe2, suggesting that 2H-3R-NbSe2 absorbs thermal energy rather than transporting it. In addition, scattering is more likely to occur in 2H-3R-NbSe2 because a far greater number of states satisfy the selection rule. As a result of these, the 2H-3R-NbSe2 has considerably lower thermal conductivity than that of the 2H-NbSe2. The results highlight how the size of the unit cell affects the thermal conductivities of polymorphs.

키워드

niobium diselenide; polymorph; thermal conductivity; unit cell size; TRANSITION-METAL DICHALCOGENIDES; TOTAL-ENERGY CALCULATIONS; PHONON TRANSPORT; BORON-NITRIDE; GRAPHENE; DISPERSION; GRAPHITE; DESIGN
제목
Effects of Unit Cell Size on Thermal Conductivity in Two Different Polymorphs of Niobium Diselenide
저자
Park, Sungjin; Kim, Kyomin; Kim, Kwangrae; Lee, Wooyoung; Soon, Aloysius; Roh, Jong-wook; Kim, Woochul
DOI
10.1002/smll.202408948
발행일
2025-03
유형
Article
저널명
Small
권
21
호
11