Flexible butyl interconnection segments are synthetically incorporated into an electronically conductive poly(pyrene methacrylate) homopolymer and its copolymer. The insertion of butyl segment makes the pyrene polymer more flexible, and can better accommodate deformation. This new class of flexible and conductive polymers can be used as a polymer binder and adhesive to facilitate the electrochemical performance of a silicon/graphene composite anode material for lithium ion battery application. They act like a “spring” to maintain the electrode mechanical and electrical integrity. High mass loading and high areal capacity, which are critical design requirements of high energy batteries, have been achieved in the electrodes composed of the no...
Si anodes suffer an inherent volume expansion problem. The consensus is that hydrogen bonds in these...
Building a stable electrode structure is an effective way to promote the practical applications of S...
High-tap-density silicon nanomaterials are highly desirable as anodes for lithium ion batteries, due...
Flexible butyl interconnection segments are synthetically incorporated into an electronically conduc...
Flexible butyl interconnection segments are synthetically incorporated into an electronically conduc...
Multifunctional conductive binders represent an emerging class of polymer materials to address inher...
Multifunctional conductive binders represent an emerging class of polymer materials to address inher...
The state-of-the-art graphite anode containing a small portion of silicon represents a promising way...
Here we describe a class of electric-conducting polymers that conduct electrons via the side chain π...
A novel polymer is designed to serve as the conductive binder for high-capacity silicon anodes in li...
A conductive polymer is developed for solving the long-standing volume change issue in lithium batte...
Next-generation anode materials for Li-ion batteries such as silicon can lead to ten\u2005times more...
High-capacity anode materials are promising candidates for increasing the energy density of lithium ...
Si anodes suffer an inherent volume expansion problem. The consensus is that hydrogen bonds in these...
Si anodes suffer an inherent volume expansion problem. The consensus is that hydrogen bonds in these...
Si anodes suffer an inherent volume expansion problem. The consensus is that hydrogen bonds in these...
Building a stable electrode structure is an effective way to promote the practical applications of S...
High-tap-density silicon nanomaterials are highly desirable as anodes for lithium ion batteries, due...
Flexible butyl interconnection segments are synthetically incorporated into an electronically conduc...
Flexible butyl interconnection segments are synthetically incorporated into an electronically conduc...
Multifunctional conductive binders represent an emerging class of polymer materials to address inher...
Multifunctional conductive binders represent an emerging class of polymer materials to address inher...
The state-of-the-art graphite anode containing a small portion of silicon represents a promising way...
Here we describe a class of electric-conducting polymers that conduct electrons via the side chain π...
A novel polymer is designed to serve as the conductive binder for high-capacity silicon anodes in li...
A conductive polymer is developed for solving the long-standing volume change issue in lithium batte...
Next-generation anode materials for Li-ion batteries such as silicon can lead to ten\u2005times more...
High-capacity anode materials are promising candidates for increasing the energy density of lithium ...
Si anodes suffer an inherent volume expansion problem. The consensus is that hydrogen bonds in these...
Si anodes suffer an inherent volume expansion problem. The consensus is that hydrogen bonds in these...
Si anodes suffer an inherent volume expansion problem. The consensus is that hydrogen bonds in these...
Building a stable electrode structure is an effective way to promote the practical applications of S...
High-tap-density silicon nanomaterials are highly desirable as anodes for lithium ion batteries, due...