Lithium metal anode based rechargeable batteries (LMBs) are regarded as a highly appealing alternatives to replace state-of-the-art lithium ion batteries (LIBs) for applications that demand higher energy density. Due to the highly reactive nature of metallic lithium and the related challenges with regard to dendrite issues at the anode, and electrolyte and cathode design, the industrial success of LMBs is yet to be safely achieved. Traditionally, in an LMB, the role of polymeric components is mostly limited to separators and cathode binders. With the advancement in polymer chemistry and its growing applications in materials science, it is now recognized that functional polymers can greatly improve the practical performance of an LMB. This p...
Lithium metal anodes have been pursued for decades as a way to significantly increase the energy den...
Advances in understanding of the basic science and engineering principles the underpin performance o...
179 pagesNext generation consumer electronics require increasingly more powerful, longer lasting, an...
Lithium metal anode based rechargeable batteries (LMBs) are regarded as a highly appealing alternati...
Lithium metal batteries (LMBs) are promising next-generation battery technologies with high energy d...
Abstract The interest for solid‐state lithium metal (Li°) batteries (SSLMBs) has been growing expone...
Expectations on solid-state lithium batteries are at their highest as they are seen as a “next-gener...
Abstract Solid polymer electrolytes (SPEs) have become increasingly attractive in solid‐state lithiu...
Lithium metal batteries are next-generation energy storage devices that rely on the stable electrode...
Li+-conducting solid polymer electrolytes (SPEs) obtained from supramolecular self-assembly of trime...
Rechargeable Li-metal batteries (LMBs) are conceivably one of the most promising battery technologie...
Batteries are recognized as one of the most important energy storage systems due to their high energ...
Lithium (Li)-metal is considered as promising anode material for high-energy-density rechargeable ba...
The development of solid polymer electrolytes for lithium battery applications is a challenge of pro...
Solid-state electrolytes are a promising family of materials for the next generation of high-energy ...
Lithium metal anodes have been pursued for decades as a way to significantly increase the energy den...
Advances in understanding of the basic science and engineering principles the underpin performance o...
179 pagesNext generation consumer electronics require increasingly more powerful, longer lasting, an...
Lithium metal anode based rechargeable batteries (LMBs) are regarded as a highly appealing alternati...
Lithium metal batteries (LMBs) are promising next-generation battery technologies with high energy d...
Abstract The interest for solid‐state lithium metal (Li°) batteries (SSLMBs) has been growing expone...
Expectations on solid-state lithium batteries are at their highest as they are seen as a “next-gener...
Abstract Solid polymer electrolytes (SPEs) have become increasingly attractive in solid‐state lithiu...
Lithium metal batteries are next-generation energy storage devices that rely on the stable electrode...
Li+-conducting solid polymer electrolytes (SPEs) obtained from supramolecular self-assembly of trime...
Rechargeable Li-metal batteries (LMBs) are conceivably one of the most promising battery technologie...
Batteries are recognized as one of the most important energy storage systems due to their high energ...
Lithium (Li)-metal is considered as promising anode material for high-energy-density rechargeable ba...
The development of solid polymer electrolytes for lithium battery applications is a challenge of pro...
Solid-state electrolytes are a promising family of materials for the next generation of high-energy ...
Lithium metal anodes have been pursued for decades as a way to significantly increase the energy den...
Advances in understanding of the basic science and engineering principles the underpin performance o...
179 pagesNext generation consumer electronics require increasingly more powerful, longer lasting, an...