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Journal of the Electrochemical Society, ISSN 0013-4651, 2010, Volume 157, Issue 10, pp. A1047 - A1051
Journal Article
Journal of Power Sources, ISSN 0378-7753, 02/2020, Volume 450, p. 227667
Journal Article
Nano Letters, ISSN 1530-6984, 09/2015, Volume 15, Issue 9, pp. 5750 - 5754
Journal Article
Nature Communications, ISSN 2041-1723, 08/2015, Volume 6, Issue 1, p. 7872
Alloy-type anodes such as silicon and tin are gaining popularity in rechargeable Li-ion batteries, but their rate/cycling capabilities should be improved. Here... 
SI NANOPARTICLES | MULTIDISCIPLINARY SCIENCES | SILICON | ELECTRODES | SURFACE | LI+/ELECTRON CONDUCTIVITY | NANOSCALE | DELITHIATION | LITHIUM | ELECTROCHEMICAL LITHIATION | TIO2 NANOPARTICLES
Journal Article
Advanced Energy Materials, ISSN 1614-6832, 01/2019, Volume 9, Issue 3, pp. 1970009 - n/a
In article number 1802645, Zhan Lin, Jun Lu and co‐workers propose a universal strategy for interweaving hard and soft polymers to construct 3D network binders... 
Si anodes | 3D network binders | lithium‐ion batteries | high areal capacity | hard and soft polymers
Journal Article
Chemical Society (Great Britain). Chemical Society Reviews, ISSN 0306-0012, 01/2018, Volume 47, Issue 6, pp. 2145 - 2164
Silicon (Si) anode is among the most promising candidates for the next-generation high-capacity electrodes in Li-ion batteries owing to its unparalleled... 
Lithium-ion batteries | Electrodes | Electrochemical analysis | Electrode materials | Silicon | Batteries | Polyvinylidene difluoride | Anodes | Commercialization | Microparticles | Rechargeable batteries
Journal Article
ACS Applied Materials & Interfaces, ISSN 1944-8244, 08/2018, Volume 10, Issue 33, pp. 27795 - 27800
Employing conductive binders in silicon (Si) anode has been considered as a fundamental solution to the pulverization of Si particles. Therefore, it is still a... 
Research | conductive binder | rate capability | Si anode | Li-ion battery | n-type doping | COMPOSITE ELECTRODE | DESIGN | MOLECULAR-ORBITAL METHODS | MATERIALS SCIENCE, MULTIDISCIPLINARY | LITHIUM BATTERIES | NANOSCIENCE & NANOTECHNOLOGY | POLYMER BINDER | NEGATIVE ELECTRODES | HIGH-CAPACITY
Journal Article
Journal of Power Sources, ISSN 0378-7753, 2011, Volume 196, Issue 16, pp. 6657 - 6662
Silicon nanowires (Si NWs) with copper-coating as high capacity and improved cycle-life anode for lithium-ion batteries have been successfully prepared by... 
Lithium-ion batteries | Electrochemical performance | Copper-coated | Silicon nanowires | ELECTROCHEMISTRY | SECONDARY BATTERIES | INSERTION | INTERFACE | SI ANODE | ENERGY & FUELS | PERFORMANCE | ELECTRODES | Electrochemistry | Silicon | Batteries | Chemical vapor deposition | Electrodes | Power sources | Cycles | Nanowires | Anodes
Journal Article
Journal of Power Sources, ISSN 0378-7753, 2014, Volume 247, pp. 327 - 331
Carboxymethyl chitosan (C-chitosan) is investigated as a new water soluble binder for Si anode of Li-ion batteries. The Fourier transformation infrared... 
Binder | Nanosize Si | Carboxymethyl chitosan | Anode | Li-ion battery | ELECTROCHEMISTRY | CAPACITY | ENERGY & FUELS | NEGATIVE ELECTRODES | NANOTUBES | NANOWIRES | X-ray spectroscopy | Batteries | Hydrogen | Lithium-ion batteries | Infrared spectroscopy | Silicon | Chitosan | Binders | Hydrogen bonding | Anodes | X-ray photoelectron spectroscopy
Journal Article
ACS Applied Materials & Interfaces, ISSN 1944-8244, 07/2018, Volume 10, Issue 29, pp. 24549 - 24553
High-performance lithium-ion batteries (LIBs) are in increasing demand for a variety of applications in rapidly growing energy-related fields including... 
Research | electrical degradation | Si-C composite | LIB degradation mechanism | scanning spreading resistance microscopy | SSRM | Li-ion battery | INSERTION | MATERIALS SCIENCE, MULTIDISCIPLINARY | NANOSCIENCE & NANOTECHNOLOGY | NANOWIRES | ELECTROCHEMICAL PERFORMANCE
Journal Article