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Division of Energy & Environmental Technology
1. Journal Articles
Improved electrochemical performance of boron-doped SiO negative electrode materials in lithium-ion batteries
Woo, Jihoon
;
Baek, Seong-Ho
;
Park, Jung-Soo
;
Jeong, Young-Min
;
Kim, Jae Hyun
Division of Energy & Environmental Technology
1. Journal Articles
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Title
Improved electrochemical performance of boron-doped SiO negative electrode materials in lithium-ion batteries
Alternative Title
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Issued Date
2015-12
Citation
Woo, Jihoon. (2015-12). Improved electrochemical performance of boron-doped SiO negative electrode materials in lithium-ion batteries. Journal of Power Sources, 299, 25–31. doi: 10.1016/j.jpowsour.2015.08.086
Type
Article
Author Keywords
Lithium ion batteries
;
Silicon monoxide
;
Disproportionation reaction
;
Boron doping
;
Negative electrode materials
Keywords
AMORPHOUS-SILICON
;
Amorphous Silicon
;
Boron-Doping
;
Boron Doping
;
Carbon
;
CELLS
;
COMPOSITE ANODES
;
Disproportionation Reaction
;
Disproportionation Reactions
;
Doping (Additives)
;
Electric Batteries
;
Electrical Conductivity
;
Electrochemical Electrodes
;
Electrochemical Impedance Spectroscopy
;
Electrochemical Impedance Spectroscopy Measurements
;
Electrochemical Performance
;
Electrodes
;
Ions
;
LI
;
Lithium
;
Lithium-Ion Batteries
;
Lithium Alloys
;
Lithium Compounds
;
Lithium Ion Batteries
;
MONOXIDE
;
Negative Electrode Material
;
Negative Electrode Materials
;
Powders
;
RECHARGEABLE BATTERIES
;
ROOM-TemPERATURE
;
Silicon
;
Silicon Monoxide
;
Silicon Oxides
;
SPECTROSCOPY
;
Thermal Disproportionation
;
Transmission Electron Microscopy
ISSN
0378-7753
Abstract
We introduce a one-step process that consists of thermal disproportionation and impurity doping to enhance the reversible capacity and electrical conductivity of silicon monoxide (SiO)-based negative electrode materials in Li-ion batteries. Transmission electron microscope (TEM) results reveal that thermally treated SiO at 900 °C (H-SiO) consists of uniformly dispersed nano-crystalline Si (nc-Si) in an amorphous silicon oxide (SiO
x
) matrix. Compared to that of prinstine SiO, the electrochemical performance of H-SiO shows improved specific capacity, due mainly to the increased reversible capacity by nc-Si and to the reduced volume expansion by thermally disproportionated SiO
x
matrix. Further electrochemical improvements can be obtained by boron-doping on SiO (HB-SiO) using solution dopant during thermal disproportionation. HB-SiO electrode without carbon coating exhibits significantly enhanced specific capacity superior to that of undoped H-SiO electrode, having 947 mAh g-1 at 0.5C rate and excellent capacity retention of 93.3% over 100 cycles. Electrochemical impedance spectroscopy (EIS) measurement reveals that the internal resistance of the HB-SiO electrode is significantly reduced by boron doping. © 2015 Elsevier B.V.
URI
http://hdl.handle.net/20.500.11750/5153
DOI
10.1016/j.jpowsour.2015.08.086
Publisher
Elsevier B.V.
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