多孔性                        
                
                                
                        
                            电解质                        
                
                                
                        
                            材料科学                        
                
                                
                        
                            电池(电)                        
                
                                
                        
                            锂(药物)                        
                
                                
                        
                            化学工程                        
                
                                
                        
                            阴极                        
                
                                
                        
                            相(物质)                        
                
                                
                        
                            Crystal(编程语言)                        
                
                                
                        
                            准固态                        
                
                                
                        
                            复合材料                        
                
                                
                        
                            电极                        
                
                                
                        
                            纳米技术                        
                
                                
                        
                            化学                        
                
                                
                        
                            功率(物理)                        
                
                                
                        
                            内分泌学                        
                
                                
                        
                            物理化学                        
                
                                
                        
                            工程类                        
                
                                
                        
                            有机化学                        
                
                                
                        
                            物理                        
                
                                
                        
                            程序设计语言                        
                
                                
                        
                            医学                        
                
                                
                        
                            量子力学                        
                
                                
                        
                            色素敏化染料                        
                
                                
                        
                            计算机科学                        
                
                        
                    
            作者
            
                Jin Wang,Gang Huang,Kai Chen,Xinbo Zhang            
         
                    
        
    
            
            标识
            
                                    DOI:10.1002/anie.202002309
                                    
                                
                                 
         
        
                
            摘要
            
            The limited triple-phase boundaries (TPBs) in solid-state cathodes (SSCs) and high resistance imposed by solid electrolytes (SEs) make the achievement of high-performance all-solid-state lithium-oxygen (ASS Li-O2 ) batteries a challenge. Herein, an adjustable-porosity plastic crystal electrolyte (PCE) has been fabricated by employing a thermally induced phase separation (TIPS) technique to overcome the above tricky issues. The SSC produced through the in-situ introduction of the porous PCE on the surface of the active material, facilitates the simultaneous transfer of Li+ /e- , as well as ensures fast flow of O2 , forming continuous and abundant TPBs. The high Li+ conductivity, softness, and adhesion of the dense PCE significantly reduce the battery resistance to 115 Ω. As a result, the ASS Li-O2 battery based on this adjustable-porosity PCE exhibits superior performances with high specific capacity (5963 mAh g-1 ), good rate capability, and stable cycling life up to 130 cycles at 32 °C. This novel design and exciting results could open a new avenue for ASS Li-O2 batteries.
         
            
 
                 
                
                    
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