Abstract
Aromatic carbonyl derivative sulfide polymers are described as a novel organic positive-electrode material for Li-ion batteries. The excellent capacity and cycling stability performances, as well as many advantages including, amongst others, high safety, make them a possible replacement for conventional inorganic transition-metal-oxide-based materials. (Abstract Copyright [2007], Wiley Periodicals, Inc.)
Citation Formats
Han, X, Chang, C, Yuan, L, Sun, J, Sun, T, and Physikalisches Institut, Muenster Universitaet (Germany)].
Aromatic carbonyl derivative polymers as high-performance Li-ion storage materials.
Germany: N. p.,
2007.
Web.
doi:10.1002/ADMA.200602584.
Han, X, Chang, C, Yuan, L, Sun, J, Sun, T, & Physikalisches Institut, Muenster Universitaet (Germany)].
Aromatic carbonyl derivative polymers as high-performance Li-ion storage materials.
Germany.
https://doi.org/10.1002/ADMA.200602584
Han, X, Chang, C, Yuan, L, Sun, J, Sun, T, and Physikalisches Institut, Muenster Universitaet (Germany)].
2007.
"Aromatic carbonyl derivative polymers as high-performance Li-ion storage materials."
Germany.
https://doi.org/10.1002/ADMA.200602584.
@misc{etde_20897219,
title = {Aromatic carbonyl derivative polymers as high-performance Li-ion storage materials}
author = {Han, X, Chang, C, Yuan, L, Sun, J, Sun, T, and Physikalisches Institut, Muenster Universitaet (Germany)]}
abstractNote = {Aromatic carbonyl derivative sulfide polymers are described as a novel organic positive-electrode material for Li-ion batteries. The excellent capacity and cycling stability performances, as well as many advantages including, amongst others, high safety, make them a possible replacement for conventional inorganic transition-metal-oxide-based materials. (Abstract Copyright [2007], Wiley Periodicals, Inc.)}
doi = {10.1002/ADMA.200602584}
journal = []
issue = {12}
volume = {19}
place = {Germany}
year = {2007}
month = {Jun}
}
title = {Aromatic carbonyl derivative polymers as high-performance Li-ion storage materials}
author = {Han, X, Chang, C, Yuan, L, Sun, J, Sun, T, and Physikalisches Institut, Muenster Universitaet (Germany)]}
abstractNote = {Aromatic carbonyl derivative sulfide polymers are described as a novel organic positive-electrode material for Li-ion batteries. The excellent capacity and cycling stability performances, as well as many advantages including, amongst others, high safety, make them a possible replacement for conventional inorganic transition-metal-oxide-based materials. (Abstract Copyright [2007], Wiley Periodicals, Inc.)}
doi = {10.1002/ADMA.200602584}
journal = []
issue = {12}
volume = {19}
place = {Germany}
year = {2007}
month = {Jun}
}