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Metallic Transition‐Metal Chalcogenides: Electrically Robust Single‐Crystalline WTe 2 Nanobelts for Nanoscale Electrical Interconnects (Adv. Sci. 3/2019)
Author(s) -
Song Seunguk,
Kim SeYang,
Kwak Jinsung,
Jo Yongsu,
Kim Jung Hwa,
Lee Jong Hwa,
Lee JaeUng,
Kim Jong Uk,
Yun Hyung Duk,
Sim Yeoseon,
Wang Jaewon,
Lee Do Hee,
Seok ShiHyun,
Kim Taeil,
Cheong Hyeonsik,
Lee Zonghoon,
Kwon SoonYong
Publication year - 2019
Publication title -
advanced science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.388
H-Index - 100
ISSN - 2198-3844
DOI - 10.1002/advs.201970017
Subject(s) - materials science , nanoscopic scale , metal , transition metal , nanotechnology , optoelectronics , metallurgy , chemistry , catalysis , biochemistry
In article number 1801370 , Soon‐Yong Kwon and co‐workers investigate single‐crystalline WTe2 nanobelts from a eutectic metal alloy, which can be a prominent interconnect candidate because of their superior electrical performance and robustness. The successful choice of new interconnect materials from the current 2D library will drive improvements to existing process technologies and will exploit the potential of the assembly of 2D atomic crystals into atomic crystal‐based systems and circuits.

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