Ni-rich cathodes are the most promising candidates for realizing high-energy-density Li-ion batteries. However, the high-valence Ni4+ ions formed in highly delithiated states are prone to reduction to lower valence states, such as Ni3+ and Ni2+, which may cause lattice oxygen loss, cation mixing, and Ni ion dissolution. Further, LiPF6, a key salt in commercialized electrolytes, undergoes hydrolysis to produce acidic compounds, which accelerate Ni-ion dissolution and the interfacial deterioration of the Ni-rich cathode. Dissolved Ni ions migrate and deposit on the surface of the graphite anode, causing continuous electrolyte decomposition and threatening battery safety by forming Li dendrites on the anode. Herein, 1,2-bis(diphenylphosphino)e...
Ni???rich cathodes are considered feasible candidates for high???energy???density Li???ion batteries...
Nickel-rich LiNi0.8Co0.1Mn0.1O2 (NCM811) with respect to Li metal can enhance the energy density of ...
Li metal anodes and Ni-rich layered oxide cathodes with high reversible capacities are promising can...
There are several routes available for improving the energy density of lithium-based batteries. One ...
The introduction of a trimethylsilyl (TMS) motif in electrolyte additives is regarded as an effectiv...
We propose the development of Ni-stabilizing electrolyte additives to fundamentally prevent the degr...
Nickel-rich layered oxides (LiNi1-x-yCoxMnyO2; (1 - x - y) >= 0.6), the high-energy-density catho...
The growing demand for sustainable energy storage devices requires rechargeable lithium-ion batterie...
Herein we address the key challenge towards the practical use of high-voltage lithium-ion cathode ma...
Enhancing the performance of lithium-ion batteries (LIBs) is of paramount importance to widely lever...
The (electro)chemical reactions between positive electrodes and electrolytes are not well understoo...
Recently, various electrolyte additives are used to reduce the negative impact on high voltage perfo...
In this paper, we propose a new electrolyte additive 3-Isocyanatopropyltriethoxysilane (IPTS) to imp...
A practical solution is presented to increase the stability of 4.45 V LiCoO2 via high-temperature Ni...
The demand for energy sources with high energy densities continues to push the limits of Ni-rich lay...
Ni???rich cathodes are considered feasible candidates for high???energy???density Li???ion batteries...
Nickel-rich LiNi0.8Co0.1Mn0.1O2 (NCM811) with respect to Li metal can enhance the energy density of ...
Li metal anodes and Ni-rich layered oxide cathodes with high reversible capacities are promising can...
There are several routes available for improving the energy density of lithium-based batteries. One ...
The introduction of a trimethylsilyl (TMS) motif in electrolyte additives is regarded as an effectiv...
We propose the development of Ni-stabilizing electrolyte additives to fundamentally prevent the degr...
Nickel-rich layered oxides (LiNi1-x-yCoxMnyO2; (1 - x - y) >= 0.6), the high-energy-density catho...
The growing demand for sustainable energy storage devices requires rechargeable lithium-ion batterie...
Herein we address the key challenge towards the practical use of high-voltage lithium-ion cathode ma...
Enhancing the performance of lithium-ion batteries (LIBs) is of paramount importance to widely lever...
The (electro)chemical reactions between positive electrodes and electrolytes are not well understoo...
Recently, various electrolyte additives are used to reduce the negative impact on high voltage perfo...
In this paper, we propose a new electrolyte additive 3-Isocyanatopropyltriethoxysilane (IPTS) to imp...
A practical solution is presented to increase the stability of 4.45 V LiCoO2 via high-temperature Ni...
The demand for energy sources with high energy densities continues to push the limits of Ni-rich lay...
Ni???rich cathodes are considered feasible candidates for high???energy???density Li???ion batteries...
Nickel-rich LiNi0.8Co0.1Mn0.1O2 (NCM811) with respect to Li metal can enhance the energy density of ...
Li metal anodes and Ni-rich layered oxide cathodes with high reversible capacities are promising can...