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Room-temperature growth of colloidal Bi2Te3 nanosheets
Author(s) -
Maria S. Sokolikova,
Peter C. Sherrell,
Pawel Palczynski,
Victoria Bemmer,
Cecilia Mattevi
Publication year - 2017
Publication title -
chemical communications
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.837
H-Index - 333
eISSN - 1364-548X
pISSN - 1359-7345
DOI - 10.1039/c7cc03151c
Subject(s) - colloid , materials science , chemical engineering , nanotechnology , crystallography , chemistry , engineering
In this work, we report the colloidal synthesis of Bi 2 Te 3 nanosheets with controlled thickness, morphology and crystallinity at temperatures as low as 20 °C. Grown at room temperature, Bi 2 Te 3 exhibits two-dimensional morphology with thickness of 4 nm and lateral size of 200 nm. Upon increasing the temperature to 170 °C, the nanosheets demonstrate increased thickness of 16 nm and lateral dimensions of 600 nm where polycrystalline nanosheets (20 °C) are replaced by single crystal platelets (170 °C). Rapid synthesis of the material at moderately low temperatures with controllable morphology, crystallinity and consequently electrical and thermal properties can pave the way toward its large-scale production for practical applications.

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