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Mechanical exfoliation and electrical characterization of a one-dimensional Nb2Se9 atomic crystal.


ABSTRACT: A novel semiconductor 1D nanomaterial, Nb2Se9, was synthesized on a bulk scale via simple vapor transport reaction between niobium and selenium. Needle-like single crystal Nb2Se9 contains numerous single Nb2Se9 chains linked by van der Waals interactions, and we confirmed that a bundle of chains can be easily separated by mechanical cleavage. The exfoliated Nb2Se9 flakes exhibit a quasi-two-dimensional layered structure, and the number of layers can be controlled using the repeated-peeling method. The work function varied depending on the thickness of the Nb2Se9 flakes as determined by scanning Kelvin probe microscopy. Moreover, we first implemented a field effect transistor (FET) based on nanoscale Nb2Se9 flakes and verified that it has p-type semiconductor characteristics. This novel 1D material can form a new family of 2D materials and is expected to play important roles in future nano-electronic devices.

SUBMITTER: Kim BJ 

PROVIDER: S-EPMC9089434 | biostudies-literature | 2018 Nov

REPOSITORIES: biostudies-literature

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Mechanical exfoliation and electrical characterization of a one-dimensional Nb<sub>2</sub>Se<sub>9</sub> atomic crystal.

Kim Bum Jun BJ   Jeong Byung Joo BJ   Oh Seungbae S   Chae Sudong S   Choi Kyung Hwan KH   Nasir Tuqeer T   Lee Sang Hoon SH   Kim Kwan-Woo KW   Lim Hyung Kyu HK   Choi Ik Jun IJ   Chi Linlin L   Hyun Sang-Hwa SH   Yu Hak Ki HK   Lee Jae-Hyun JH   Choi Jae-Young JY  

RSC advances 20181109 66


A novel semiconductor 1D nanomaterial, Nb<sub>2</sub>Se<sub>9</sub>, was synthesized on a bulk scale <i>via</i> simple vapor transport reaction between niobium and selenium. Needle-like single crystal Nb<sub>2</sub>Se<sub>9</sub> contains numerous single Nb<sub>2</sub>Se<sub>9</sub> chains linked by van der Waals interactions, and we confirmed that a bundle of chains can be easily separated by mechanical cleavage. The exfoliated Nb<sub>2</sub>Se<sub>9</sub> flakes exhibit a quasi-two-dimensional  ...[more]

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