logo

Accumulateur Lithium Soufre

PDF Publication Title:

Accumulateur Lithium Soufre ( accumulateur-lithium-soufre )

Previous Page View | Next Page View | Return to Search List

Text from PDF Page: 246

(138) Su, Y. S.; Manthiram, A. Lithium-sulphur batteries with a microporous carbon paper as a bifunctional interlayer. Nature communications 2012, 3, 1166. (139) Xu, R.; Zhang, X.; Yu, C.; Ren, Y.; Li, J. C.; Belharouak, I. Paving the way for using Li(2)S batteries. ChemSusChem 2014, 7, 2457-2460. (140) Fu, Y.; Zu, C.; Manthiram, A. In situ-formed Li2S in lithiated graphite electrodes for lithium-sulfur batteries. Journal of the American Chemical Society 2013, 135, 18044-18047. (141) Yang, Y.; Zheng, G.; Misra, S.; Nelson, J.; Toney, M. F.; Cui, Y. High-capacity micrometer- sized Li2S particles as cathode materials for advanced rechargeable lithium-ion batteries. Journal of the American Chemical Society 2012, 134, 15387-15394. (142) Wu, F.; Kim, H.; Magasinski, A.; Lee, J. T.; Lin, H.-T.; Yushin, G. Harnessing Steric Separation of Freshly Nucleated Li2S Nanoparticles for Bottom-Up Assembly of High-Performance Cathodes for Lithium-Sulfur and Lithium-Ion Batteries. Advanced Energy Materials 2014, 4, n/a-n/a. (143) Meini, S.; Elazari, R.; Rosenman, A.; Garsuch, A.; Aurbach, D. The Use of Redox Mediators for Enhancing Utilization of Li2S Cathodes for Advanced Li–S Battery Systems. The Journal of Physical Chemistry Letters 2014, 5, 915-918. (144) Hayashi, A.; Ohtsubo, R.; Ohtomo, T.; Mizuno, F.; Tatsumisago, M. All-solid-state rechargeable lithium batteries with Li2S as a positive electrode material. Journal of Power Sources 2008, 183, 422-426. (145) Lin, Z.; Liu, Z.; Dudney, N. J.; Liang, C. Lithium Superionic Sulfide Cathode for All-Solid Lithium–Sulfur Batteries. ACS Nano 2013, 7, 2829-2833. (146) Hiesgen, R.; Sorgel, S.; Costa, R.; Carle, L.; Galm, I.; Canas, N.; Pascucci, B.; Friedrich, K. A. AFM as an analysis tool for high-capacity sulfur cathodes for Li-S batteries. Beilstein journal of nanotechnology 2013, 4, 611-624. (147) Takeuchi, T.; Sakaebe, H.; Kageyama, H.; Senoh, H.; Sakai, T.; Tatsumi, K. Preparation of electrochemically active lithium sulfide–carbon composites using spark-plasma-sintering process. Journal of Power Sources 2010, 195, 2928-2934. (148) Jeong, S.; Bresser, D.; Buchholz, D.; Winter, M.; Passerini, S. Carbon coated lithium sulfide particles for lithium battery cathodes. Journal of Power Sources 2013, 235, 220-225. (149) Nan, C.; Lin, Z.; Liao, H.; Song, M. K.; Li, Y.; Cairns, E. J. Durable carbon-coated Li2(S) core-shell spheres for high performance lithium/sulfur cells. Journal of the American Chemical Society 2014, 136, 4659-4663. (150) Nagao, M.; Hayashi, A.; Tatsumisago, M. High-capacity Li2S–nanocarbon composite electrode for all-solid-state rechargeable lithium batteries. Journal of Materials Chemistry 2012, 22, 10015. (151) Hassoun, J.; Sun, Y.-K.; Scrosati, B. Rechargeable lithium sulfide electrode for a polymer tin/sulfur lithium-ion battery. Journal of Power Sources 2011, 196, 343-348. (152) Cai, K.; Song, M.-K.; Cairns, E. J.; Zhang, Y. Nanostructured Li2S–C Composites as Cathode Material for High-Energy Lithium/Sulfur Batteries. Nano letters 2012, 12, 6474-6479. (153) Fu, Y.; Su, Y.-S.; Manthiram, A. Li2S-Carbon Sandwiched Electrodes with Superior Performance for Lithium-Sulfur Batteries. Advanced Energy Materials 2014, 4, n/a-n/a. (154) Yang, Y.; McDowell, M. T.; Jackson, A.; Cha, J. J.; Hong, S. S.; Cui, Y. New nanostructured Li2S/silicon rechargeable battery with high specific energy. Nano letters 2010, 10, 1486-1491. (155) Yim, T.; Park, M.-S.; Yu, J.-S.; Kim, K. J.; Im, K. Y.; Kim, J.-H.; Jeong, G.; Jo, Y. N.; Woo, S.- G.; Kang, K. S.; Lee, I.; Kim, Y.-J. Effect of chemical reactivity of polysulfide toward carbonate-based electrolyte on the electrochemical performance of Li–S batteries. Electrochimica Acta 2013, 107, 454- 460. (156) Zheng, S.; Han, P.; Han, Z.; Zhang, H.; Tang, Z.; Yang, J. High performance C/S composite cathodes with conventional carbonate-based electrolytes in Li-S battery. Scientific reports 2014, 4, 4842. 242 References

PDF Image | Accumulateur Lithium Soufre

accumulateur-lithium-soufre-246

PDF Search Title:

Accumulateur Lithium Soufre

Original File Name Searched:

WALUS_2015_archivage.pdf

DIY PDF Search: Google It | Yahoo | Bing

Sulfur Deposition on Carbon Nanofibers using Supercritical CO2 Sulfur Deposition on Carbon Nanofibers using Supercritical CO2. Gamma sulfur also known as mother of pearl sulfur and nacreous sulfur... More Info

CO2 Organic Rankine Cycle Experimenter Platform The supercritical CO2 phase change system is both a heat pump and organic rankine cycle which can be used for those purposes and as a supercritical extractor for advanced subcritical and supercritical extraction technology. Uses include producing nanoparticles, precious metal CO2 extraction, lithium battery recycling, and other applications... More Info

CONTACT TEL: 608-238-6001 Email: greg@infinityturbine.com | RSS | AMP