The design and engineering of composite materials is one strategy to satisfy the materials needs of systems with multiple orthogonal property requirements. In the case of rechargeable batteries with lithium metal anodes, the system requires a separator with fast lithium ion transport and good mechanical strength. In this work, we focus on the system polystyrene-block-poly(ethylene oxide) (SEO) with bis(trifluoromethane)sulfonimide lithium salt (LiTFSI). Ion transport occurs in the salt-containing poly(ethylene oxide)-rich domains. Mechanical rigidity arises due to the glassy nature of polystyrene (PS). If we assume that the salt does not interact with the PS-rich domains, we can describe ion transport in the electrolyte by three transport p...
International audienceWe explore the relationship between the morphology and ionic conductivity of b...
We explore the relationship between the morphology and ionic conductivity of block copolymer electro...
Rechargeable batteries are ubiquitous in our daily lives thanks to advancements in technology and lo...
Single-ion-conducting polymers are ideal electrolytes for rechargeable lithium batteries as they eli...
International audienceSingle-ion-conducting polymers are ideal electrolytes for rechargeable lithium...
When mixed with lithium salts, polymers that contain more than one chemical group, such as block cop...
When mixed with lithium salts, polymers that contain more than one chemical group, such as block cop...
Nanostructured block copolymer electrolytes containing an ion-conducting block and a modulus-strengt...
We explore the relationship between the morphology and ionic conductivity of block copolymer electro...
Solid electrolytes have been a long-standing goal of the battery industry since they have been consi...
International audienceA significant limitation of rechargeable lithium-ion batteries arises because ...
We explore the relationship between the morphology and ionic conductivity of block copolymer electro...
A significant limitation of rechargeable lithium-ion batteries arises because most of the ionic curr...
A significant limitation of rechargeable lithium-ion batteries arises because most of the ionic curr...
A significant limitation of rechargeable lithium-ion batteries arises because most of the ionic curr...
International audienceWe explore the relationship between the morphology and ionic conductivity of b...
We explore the relationship between the morphology and ionic conductivity of block copolymer electro...
Rechargeable batteries are ubiquitous in our daily lives thanks to advancements in technology and lo...
Single-ion-conducting polymers are ideal electrolytes for rechargeable lithium batteries as they eli...
International audienceSingle-ion-conducting polymers are ideal electrolytes for rechargeable lithium...
When mixed with lithium salts, polymers that contain more than one chemical group, such as block cop...
When mixed with lithium salts, polymers that contain more than one chemical group, such as block cop...
Nanostructured block copolymer electrolytes containing an ion-conducting block and a modulus-strengt...
We explore the relationship between the morphology and ionic conductivity of block copolymer electro...
Solid electrolytes have been a long-standing goal of the battery industry since they have been consi...
International audienceA significant limitation of rechargeable lithium-ion batteries arises because ...
We explore the relationship between the morphology and ionic conductivity of block copolymer electro...
A significant limitation of rechargeable lithium-ion batteries arises because most of the ionic curr...
A significant limitation of rechargeable lithium-ion batteries arises because most of the ionic curr...
A significant limitation of rechargeable lithium-ion batteries arises because most of the ionic curr...
International audienceWe explore the relationship between the morphology and ionic conductivity of b...
We explore the relationship between the morphology and ionic conductivity of block copolymer electro...
Rechargeable batteries are ubiquitous in our daily lives thanks to advancements in technology and lo...