Major improvements in stability and performance of batteries are still required for a more effective diffusion in industrial key sectors such as automotive and foldable electronics. An encouraging route resides in the implementation into energy storage devices of self-healing features, which can effectively oppose the deterioration upon cycling that is typical of these devices. In order to provide a comprehensive view of the topic, this Review first summarizes the main self-healing processes that have emerged in the multifaceted field of smart materials, classifying them on the basis of their recovering mechanisms. Then, attention is closely focused on self-healable energy storage devices. In particular, self-healing in lithium-ion and lith...
There is an intense, worldwide effort to develop durable lithium ion batteries with high energy and ...
Lithium–sulfur batteries are poised to outcompete lithium-ion batteries in key sectors such as trans...
Thermal-mechanical failure of microelectronic devices often involves in the loss of conductivity of ...
The inner constituents of lithium-ion batteries (LIBs) are easy to deform during charging and discha...
International audienceComplex battery degradation is an interplay of different processes correlated ...
Smart electrochemical energy storage devices are devices that can operate autonomously to some exten...
Abstract The integration of polymer materials with self-healing features into advanced lithium batt...
Li-ion batteries are prone to the failure mechanisms because of drastic structural changes, degradat...
Self-healing polymer materials are able to self-repair damage and recover themselves after cracks ge...
© 2017 Elsevier Inc. Lithium-sulfur batteries are the most promising candidates for next-generation ...
Both industrious and academic research societies have considered silicon (Si) as the most promising ...
The Li dendrites introduced by the inhomogeneous Li-ion flux are the barriers to the commercializati...
Autonomic self-healing (SH), namely, the ability to repair damages from mechanical stress spontaneou...
Lithium metal is considered the “holy grail” material to replace typical Li-ion anodes due to the ab...
The transformation of energy structure is deemed as a paramount strategy in accomplishing the ambiti...
There is an intense, worldwide effort to develop durable lithium ion batteries with high energy and ...
Lithium–sulfur batteries are poised to outcompete lithium-ion batteries in key sectors such as trans...
Thermal-mechanical failure of microelectronic devices often involves in the loss of conductivity of ...
The inner constituents of lithium-ion batteries (LIBs) are easy to deform during charging and discha...
International audienceComplex battery degradation is an interplay of different processes correlated ...
Smart electrochemical energy storage devices are devices that can operate autonomously to some exten...
Abstract The integration of polymer materials with self-healing features into advanced lithium batt...
Li-ion batteries are prone to the failure mechanisms because of drastic structural changes, degradat...
Self-healing polymer materials are able to self-repair damage and recover themselves after cracks ge...
© 2017 Elsevier Inc. Lithium-sulfur batteries are the most promising candidates for next-generation ...
Both industrious and academic research societies have considered silicon (Si) as the most promising ...
The Li dendrites introduced by the inhomogeneous Li-ion flux are the barriers to the commercializati...
Autonomic self-healing (SH), namely, the ability to repair damages from mechanical stress spontaneou...
Lithium metal is considered the “holy grail” material to replace typical Li-ion anodes due to the ab...
The transformation of energy structure is deemed as a paramount strategy in accomplishing the ambiti...
There is an intense, worldwide effort to develop durable lithium ion batteries with high energy and ...
Lithium–sulfur batteries are poised to outcompete lithium-ion batteries in key sectors such as trans...
Thermal-mechanical failure of microelectronic devices often involves in the loss of conductivity of ...