Germanium-tin alloy nanocrystals for high-performance lithium ion batteries
- Authors
- Cho, Yong Jae; Kim, Chang Hyun; Im, Hyung Soon; Myung, Yoon; Kim, Han Sung; Back, Seung Hyuk; Lim, Young Rok; Jung, Chan Su; Jang, Dong Myung; Park, Jeunghee; Lim, Sang Hoo; Cha, Eun Hee; Bae, Ki Yoon; Song, Min Seob; Il Cho, Won
- Issue Date
- 2013-05
- Publisher
- ROYAL SOC CHEMISTRY
- Citation
- PHYSICAL CHEMISTRY CHEMICAL PHYSICS, v.15, no.28, pp.11691 - 11695
- 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.
- Keywords
- HIGH-CAPACITY; ANODE MATERIAL; GE1-XSNX ALLOYS; GE NANOWIRES; SN ALLOYS; LI; STORAGE; NANOPARTICLES; COMPOSITE; NANOCOMPOSITE; HIGH-CAPACITY; ANODE MATERIAL; GE1-XSNX ALLOYS; GE NANOWIRES; SN ALLOYS; LI; STORAGE; NANOPARTICLES; COMPOSITE; NANOCOMPOSITE; Ge-Sn; nanocrystal; laser-photo synthesis; anode; lithium ion battery
- ISSN
- 1463-9076
- URI
- https://pubs.kist.re.kr/handle/201004/128127
- DOI
- 10.1039/c3cp51366a
- Appears in Collections:
- KIST Article > 2013
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