材料科学                        
                
                                
                        
                            基质(水族馆)                        
                
                                
                        
                            复合数                        
                
                                
                        
                            粘附                        
                
                                
                        
                            蚀刻(微加工)                        
                
                                
                        
                            复合材料                        
                
                                
                        
                            表面粗糙度                        
                
                                
                        
                            表面光洁度                        
                
                                
                        
                            铝                        
                
                                
                        
                            纳米技术                        
                
                                
                        
                            图层(电子)                        
                
                                
                        
                            地质学                        
                
                                
                        
                            海洋学                        
                
                        
                    
            作者
            
                Xiao Wang,Weidong Wang,Hong Shao,Shengmao Chao,Haiyan Zhang,Changyu Tang,Xiongyao Li,Yingmin Zhu,Ji Zhang,Xiaoping Zhang,Yang Lü            
         
                    
        
    
            
            标识
            
                                    DOI:10.1021/acsami.2c07237
                                    
                                
                                 
         
        
                
            摘要
            
            Reducing lunar dust adhesion to various material surfaces is important for protecting equipment from damage during lunar exploration missions. In this study, we investigate the lunar dust-mitigation ability and dust adhesion force of aluminum (Al) substrates prepared using different etching methods. Among them, composite etching methods (combining chemical and electrochemical steps) can result in multiscale structures with micro- and nanoroughness, reducing the contact area between the substrate and thus decreasing lunar dust adhesion. After composite etching, the dust adhesion force of the Al substrate was significantly reduced by 80% from 45.53 to 8.89 nN. The dust adhesion force of Al substrates dominates their dust-mitigation performance in floating dust environments. The lunar dust coverage (2.19%) of the Al substrate modified by composite etching (placed with a tilt angle of 90°) was 4-fold lower than that of the pristine Al substrate (9.11%), indicating excellent lunar-dust repellence. In addition, other factors such as tilt angle of the substrate and dust loading significantly affect dust-mitigation performance of the modified Al substrates. The Al substrate with an excellent dust-mitigation ability highlights good potential for lunar exploration missions.
         
            
 
                 
                
                    
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