Advanced Energy Materials
Advanced Energy Materials, EarlyView.
The trade-off between the mechanical strength and ionic conductivity of solid polymer electrolytes at both room temperature and elevated temperatures is broken by utilizing extremely strong poly(p-phenylene benzobisoxazole) (PBO) as the backbone and polyethylene oxide (PEO) as the ionically conductive network. The PBO/PEO solid polymer electrolyte...
Advanced Energy Materials, EarlyView.
A N-doped carbon framework embedded with a plethora of CuS nanocrystallites is designed as a host for Li2S in an all-solid-state battery. CuS lowers the activation barrier of Li2S to sulfur conversion, enhancing the kinetics and Li+ transport. The as-assembled batteries achieve high areal capacity and long cycle life with good cycling stability. ...
Bismuth@C (Bi@C) nanosheet arrays are fabricated via a facile galvanic replacement strategy coupled with an in situ dopamine coating and annealing route. Due to the unique nanosheet array design, this Bi@C anode could effectually ameliorate the volume fluctuation, shorten the diffusion distance of Na+ ions, and thus facilitate the electrochemical...
As organic photovoltaic technology transitions from the laboratory to module mass production, challenges like variations in device architecture and issues related to material availability have become evident. This article seeks to heighten awareness among researchers in related fields regarding the current industry challenges. Addressing these bottlenecks...
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