International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potential (4.7 V vs Li+/Li), Co-free spinel LiNi0.5Mn1.5O4 (LNMO) is one of the most promising thin film cathodes allowing designing Li-ion micro-batteries with a high specific energy. In this work, the Li extraction–insertion mechanism in sputtered LNMO thin films is investigated by X-ray diffraction and Raman spectroscopy during the first electrochemical cycle. A one-step phase transition involving two cubic phases is revealed, consisting of a wide solid solution region (0.3 ≤ x ≤ 1 in LixNMO) and a narrow biphasic domain (0 < x ≤ 0.3). Remarkably, significant variations are observed in the Raman spectra, which are linked to the activity of the Ni...
International audienceTo power miniaturized and smart electronic devices, lithium-ion microbatteries...
International audienceTo power miniaturized and smart electronic devices, lithium-ion microbatteries...
International audienceTo power miniaturized and smart electronic devices, lithium-ion microbatteries...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
As a high-voltage spinel, LiNi0.5Mn1.5O4 (LNMO) is a promising candidate for high energy density cat...
International audienceLithium-ion batteries are commonly used for electrical energy storage in porta...
International audienceTo power miniaturized and smart electronic devices, lithium-ion microbatteries...
International audienceTo power miniaturized and smart electronic devices, lithium-ion microbatteries...
International audienceTo power miniaturized and smart electronic devices, lithium-ion microbatteries...
International audienceTo power miniaturized and smart electronic devices, lithium-ion microbatteries...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
As a high-voltage spinel, LiNi0.5Mn1.5O4 (LNMO) is a promising candidate for high energy density cat...
International audienceLithium-ion batteries are commonly used for electrical energy storage in porta...
International audienceTo power miniaturized and smart electronic devices, lithium-ion microbatteries...
International audienceTo power miniaturized and smart electronic devices, lithium-ion microbatteries...
International audienceTo power miniaturized and smart electronic devices, lithium-ion microbatteries...
International audienceTo power miniaturized and smart electronic devices, lithium-ion microbatteries...