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Germanium-tin alloy nanocrystals for high-performance lithium ion batteries

Authors
Cho, Yong JaeKim, Chang HyunIm, Hyung SoonMyung, YoonKim, Han SungBack, Seung HyukLim, Young RokJung, Chan SuJang, Dong MyungPark, JeungheeLim, Sang HooCha, Eun HeeBae, Ki YoonSong, Min SeobIl Cho, Won
Issue Date
2013
Publisher
ROYAL SOC CHEMISTRY
Citation
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, v.15, no.28, pp.11691 - 11695
Indexed
SCIE
SCOPUS
Journal Title
PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume
15
Number
28
Start Page
11691
End Page
11695
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/106513
DOI
10.1039/c3cp51366a
ISSN
1463-9076
Abstract
Germanium-tin (Ge1-xSnx) alloy nanocrystals were synthesized using a gas-phase laser photolysis reaction of tetramethyl germanium and tetramethyl tin. A composition tuning was achieved using the partial pressure of precursors in a closed reactor. For x < 0.1, cubic phase alloy nanocrystals were exclusively produced without separation of the tetragonal phase Sn metal. In the range of x = 0.1-0.4, unique Ge1-xSnx-Sn alloy-metal hetero-junction nanocrystals were synthesized, where the Sn metal domain becomes dominant with x. Thin graphitic carbon layers usually sheathed the nanocrystals. We investigated the composition-dependent electrochemical properties of these nanocrystals as anode materials of lithium ion batteries. Incorporation of Sn (x = 0.05) significantly increased the capacities (1010 mA h g(-1) after 50 cycles) and rate capabilities, which promises excellent electrode materials for the development of high-performance lithium batteries.
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