Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1-x-y]O-2 (LLNMO), are promising positive electrode materials for lithium rechargeable batteries because of their high energy density and low materials cost. However, substantial voltage decay is inevitable upon electrochemical cycling, which makes this class of materials less practical. It has been proposed that undesirable voltage decay is linked to irreversible structural rearrangement involving irreversible oxygen loss and cation migration. Herein, the authors demonstrate that the voltage decay of the electrode is correlated to Mn4+/Mn3+ redox activation and subsequent cation disordering, which can be remarkably suppressed via simple compositional tuning to induce the ...
Layered lithium-nickel-cobalt-manganese oxide (NCM) materials have emerged as promising alternative ...
The progressive advancements in communication and transportation has changed human daily life to a g...
Abstract: One major challenge in the field of lithium-ion batteries is to understand the degradation...
Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1-x-y]O-2 (LLNMO), are promisin...
Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1−x−y]O2 (LLNMO), are promising...
Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1−x−y]O2 (LLNMO), are promising...
The use of high-energy-density lithium-rich layered-oxide electrodes in batteries is hindered by vol...
Li-rich Mn-based oxides (LRMO) are promising cathode materials to build next-generation lithium-ion ...
Despite the high energy density of lithium-rich layered-oxide electrodes, their real-world implement...
Voltage decay,i.e., the voltage decrease during electrochemical cycling, has been a decade-long chal...
Li-rich layered materials have been considered as the most promising cathode materials for future hi...
Lithium-rich transition-metal-oxide cathodes are among the most promising materials for next generat...
Lithium-rich transition-metal-oxide cathodes are among the most promising materials for next generat...
© 2020 American Chemical Society. Layered lithium nickel, manganese, and cobalt oxides (NMC) are amo...
Lithium-rich transition-metal-oxide cathodes are among the most promising materials for next genera...
Layered lithium-nickel-cobalt-manganese oxide (NCM) materials have emerged as promising alternative ...
The progressive advancements in communication and transportation has changed human daily life to a g...
Abstract: One major challenge in the field of lithium-ion batteries is to understand the degradation...
Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1-x-y]O-2 (LLNMO), are promisin...
Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1−x−y]O2 (LLNMO), are promising...
Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1−x−y]O2 (LLNMO), are promising...
The use of high-energy-density lithium-rich layered-oxide electrodes in batteries is hindered by vol...
Li-rich Mn-based oxides (LRMO) are promising cathode materials to build next-generation lithium-ion ...
Despite the high energy density of lithium-rich layered-oxide electrodes, their real-world implement...
Voltage decay,i.e., the voltage decrease during electrochemical cycling, has been a decade-long chal...
Li-rich layered materials have been considered as the most promising cathode materials for future hi...
Lithium-rich transition-metal-oxide cathodes are among the most promising materials for next generat...
Lithium-rich transition-metal-oxide cathodes are among the most promising materials for next generat...
© 2020 American Chemical Society. Layered lithium nickel, manganese, and cobalt oxides (NMC) are amo...
Lithium-rich transition-metal-oxide cathodes are among the most promising materials for next genera...
Layered lithium-nickel-cobalt-manganese oxide (NCM) materials have emerged as promising alternative ...
The progressive advancements in communication and transportation has changed human daily life to a g...
Abstract: One major challenge in the field of lithium-ion batteries is to understand the degradation...