Solid-state ion conductors based on organic ionic plastic crystals (OIPCs) are a promising alternative to conventional liquid electrolytes in lithium battery applications. The OIPC-based electrolytes are safe (nonflammable) and flexible in terms of design and operating conditions. Magnetic resonance imaging (MRI) is a powerful noninvasive method enabling visualization of various chemical phenomena. Here, we report a first quantitative in situ MRI study of operating solid-state lithium cells. Lithium ion transfer into the OIPC matrix during the ongoing discharge of the anode results in partial liquefaction of the electrolyte at the metal interface. The developed liquid component enhances the ion transport across the interface and overall bat...
Ternary systems consisting of polymers, lithium salts, and ionic liquids (ILs) are promising materia...
Organic ionic plastic crystals (OIPCs) show strong potential as solid-state electrolytes for lithium...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
Solid-state ion conductors based on organic ionic plastic crystals (OIPCs) are a promising alternati...
Because of the high specific capacity and low redox potential, lithium metal constitutes a promising...
The ability to image electrochemical processes in situ using nuclear magnetic resonance imaging (MRI...
Organic ionic plastic crystals (OIPCs) are attractive as solid-state electrolytes for electrochemica...
The development of commercial solid-state batteries has to date been hindered by the individual limi...
A toroid cavity nuclear magnetic resonance (NMR) detector capable of quantitatively recording radial...
All-solid-state rechargeable batteries embody the promise for high energy density, increased stabili...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Accurate modeling of Li-ion batteries performance, particularly during the transient conditions expe...
An innovative combined magnetic resonance imaging and nuclear magnetic resonance methodology, which ...
Lithium metal is a promising anode material for Li-ion batteries due to its high theoretical specifi...
While the high energy density of lithium metal has long been a strong driver for the development of ...
Ternary systems consisting of polymers, lithium salts, and ionic liquids (ILs) are promising materia...
Organic ionic plastic crystals (OIPCs) show strong potential as solid-state electrolytes for lithium...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
Solid-state ion conductors based on organic ionic plastic crystals (OIPCs) are a promising alternati...
Because of the high specific capacity and low redox potential, lithium metal constitutes a promising...
The ability to image electrochemical processes in situ using nuclear magnetic resonance imaging (MRI...
Organic ionic plastic crystals (OIPCs) are attractive as solid-state electrolytes for electrochemica...
The development of commercial solid-state batteries has to date been hindered by the individual limi...
A toroid cavity nuclear magnetic resonance (NMR) detector capable of quantitatively recording radial...
All-solid-state rechargeable batteries embody the promise for high energy density, increased stabili...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Accurate modeling of Li-ion batteries performance, particularly during the transient conditions expe...
An innovative combined magnetic resonance imaging and nuclear magnetic resonance methodology, which ...
Lithium metal is a promising anode material for Li-ion batteries due to its high theoretical specifi...
While the high energy density of lithium metal has long been a strong driver for the development of ...
Ternary systems consisting of polymers, lithium salts, and ionic liquids (ILs) are promising materia...
Organic ionic plastic crystals (OIPCs) show strong potential as solid-state electrolytes for lithium...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...