高分子与聚合物基复合材料 
											                         			                         			                         			                         										 
									
								         
		  							 
          							
          									  								 
        						 
      						
      					 
  					 
  					
    					 
   										
    					基于二维石墨烯纳米材料优化高分子分离膜的研究进展  
  					  										
						谢全灵1 ,邵文尧2 ,马寒骏1,2 ,刘晨然1,2 ,洪专1,3  
					 
															
					1 自然资源部第三海洋研究所,厦门 361005  
										
						 
   										
    					Research Progress in Optimizations of Polymer-matrix Membranes Using Two-dimensional Graphene-based Nanomaterials  
  					  					  					
						XIE Quanling1 , SHAO Wenyao2 , MA Hanjun1,2 , LIU Chenran1,2 ,HONG Zhuan1,3  
					 
															
						1 Third Institute of Oceanography, Ministry of Natural Resources, Xiamen 361005    
									
				
				
					
						
							
								
									
										
								            
                        					 
												
													
													    
													    	
									 
								 
								
													
													
													    
													    		                            						                            																	    摘要  高分子分离膜的渗透性与选择性之间存在此长彼消的Trade-off效应,且其抗污染性能、化学稳定性能也亟待提升。有机-无机杂化膜综合了有机高分子材料和无机材料的优点。近年来,纳米材料的快速发展对传统高分子膜材料具有重要的推动作用,尤其是基于二维石墨烯纳米材料开发的新型复合分离膜成为备受关注的研究热点。 
																										     
													    
													    	
															 
														 
												  		
															关键词:  
																																																																石墨烯  
																																																																	氧化石墨烯  
																																																																	高分子膜  
																																																																	膜分离  
																																  
															 
																																										
															Abstract:  To date, polymer membranes still encounter several challenges including the trade-off effect between permeability and selectivity, low resis-tance to fouling and chemical stability. Organic-inorganic hybrid membranes can make use of the advantages of organic materials and inorganic materials. In recent years, the rapid development of nanomaterials plays an important role in promoting the development of new composite membranes. Especially, the application of two-dimensional graphene nanomaterials has attracted more and more attentions. 
																																										
															Key words:  
																																																	graphene 
																	  																																		 graphene oxide 
																	  																																		 polymer-matrix membrane 
																	  																																		 membrane separation 
																																																 
																												
														
															
															        
																    
																    
																																	出版日期:   2019-09-10
															        
																																	发布日期:   2019-07-23
															    															    	
															 
														 
														 														
															
																
																																																																							
																				ZTFLH:  
																					O631
																				 
																				
																					  
																				 
																			 
																																																																								
																				  
																				
																					TB324
																				 
																				
																					  
																				 
																			 
																																																																								
																				  
																				
																					TQ316.6
																				 
																				
																					  
																				 
																			 
																																																			
															 
														 
																																										
															基金资助:  厦门市产学研协同创新及科技合作项目(3502Z20172008);海洋三所基本科研业务费专项资金(2016036);厦门海洋高技术产业基地创业创新共享服务平台项目(16PFW008SF15);海洋中试技术研发与检测公共服务平台建设(Bhsfs009);厦门大学校长基金(20720170027) 
																											    																												
															作者简介:   谢全灵,男,博士,高级工程师,研究方向包括膜分离技术与膜材料研发,天然产物分离纯化技术研究,水产加工副产物高值化利用与成果转化技术研究等。承担或作为技术骨干参与各类科研项目10余项;申请国家发明专利7项,获授权4 项;在国内外期刊上发表论文20余篇;获得中国海洋工程科学技术奖二等奖1项,国家海洋局海洋创新成果二等奖1项。 
																											
							                        
													 
														
															引用本文:      
														
															
																														谢全灵,邵文尧,马寒骏,刘晨然,洪专. 基于二维石墨烯纳米材料优化高分子分离膜的研究进展[J]. 材料导报, 2019, 33(17): 2958-2965.	
																																									     												                                                                                                        	                                                             
														 
														
															 
														
															链接本文:    
														
															
																
																	
																	http://www.mater-rep.com/CN/10.11896/cldb.18070027
																	 
																 或          
																
																http://www.mater-rep.com/CN/Y2019/V33/I17/2958 															 
														 
													
												 
												
																																	            
									                
																								
					1  
					 
					 Daer S, Kharraz J, Giwa A, et al. <i>Desalination</i>, 2015,367,37.<br />
					 					 
				 
												
					2  
					 
					 Lau W J, Gray S, Matsuura T, et al.<i>Water Research</i>, 2015,80,306.<br />
					 					 
				 
												
					3  
					 
					 Goh P S,Ismail A F. <i>Journal of Chemical Technology & Biotechnology</i>, 2015,90(6),971.<br />
					 					 
				 
												
					4  
					 
					 Goh P S,Ismail A F.<i>Desalination</i>, 2015,356,115.<br />
					 					 
				 
												
					5  
					 
					 Yin J,Deng B L.<i>Journal of Membrane Science</i>, 2015,479,256.<br />
					 					 
				 
												
					6  
					 
					 Li R Y, Zhang L B,Wang P. <i>Nanoscale</i>, 2015,7(41),17167.<br />
					 					 
				 
												
					7  
					 
					 Salim W,Ho W S W. <i>Current Opinion in Chemical Engineering</i>, 2015,8,76.<br />
					 					 
				 
												
					8  
					 
					 Wang X D, Wang Z N, Gao C J.<i>Chinese Journal of Applied Chemistry</i>, 2014,31(2),123(in Chinese).<br />
					 					 
				 
												
					 
					 王熙大, 王志宁, 高从堦. 应用化学, 2014,31(2),123.<br />
					 					 
				 
												
					9  
					 
					 Dong H, Zhang L, Chen H L, et al.<i>Progress in Chemistry</i>, 2014,26(12),2007(in Chinese).<br />
					 					 
				 
												
					 
					 董航, 张林, 陈欢林, 等. 化学进展, 2014,26(12),2007.<br />
					 					 
				 
												
					10 
					 
					 Compton O C,Nguyen S T. <i>Small</i>, 2010,6(6),711.<br />
					 					 
				 
												
					11 
					 
					 Paredes J I, Villar-Rodil S, Martinez-Alonso A, et al. <i>Langmuir</i>, 2008,24(19),10560.<br />
					 					 
				 
												
					12 
					 
					 Deng H, Sun P Z, Zhang Y J, et al.<i>Chinese Science Bulletin</i>, 2015,60(33),3196(in Chinese).<br />
					 					 
				 
												
					 
					 邓会, 孙鹏展, 张迎九, 等. 科学通报, 2015,60(33),3196.<br />
					 					 
				 
												
					13 
					 
					 Wang Z H, Yu H R, Xia J F, et al.<i>Desalination</i>, 2012,299,50.<br />
					 					 
				 
												
					14 
					 
					 Chang X J, Wang Z X, Quan S, et al. <i>Applied Surface Science</i>, 2014,316,537.<br />
					 					 
				 
												
					15 
					 
					 Xia S J,Ni M Z. <i>Journal of Membrane Science</i>, 2015,473,54.<br />
					 					 
				 
												
					16 
					 
					 Zhao C, Xu X, Chen J, et al.<i>Journal of Environmental Chemical Engineering</i>, 2013,1(3),349.<br />
					 					 
				 
												
					17 
					 
					 Zhao C Q, Xu X C, Chen J, et al.<i>Desalination</i>, 2014,334(1),17.<br />
					 					 
				 
												
					18 
					 
					 Ganesh B M, Isloor A M,Ismail A F. <i>Desalination</i>, 2013,313,199.<br />
					 					 
				 
												
					19 
					 
					 Lee J, Chae H R, Won Y J, et al.<i>Journal of Membrane Science</i>, 2013,448,223.<br />
					 					 
				 
												
					20 
					 
					 Kumar M, McGlade D, Ulbricht M, et al.<i>RSC Advances</i>, 2015,5(63),51208.<br />
					 					 
				 
												
					21 
					 
					 Zinadini S, Zinatizadeh A A, Rahimi M, et al. <i>Journal of Membrane Science</i>, 2014,453,292.<br />
					 					 
				 
												
					22 
					 
					 Jin F M, Lv W, Zhang C, et al. <i>RSC Advances</i>, 2013,3(44),21394.<br />
					 					 
				 
												
					23 
					 
					 Kim F, Cote L J,Huang J. <i>Advanced Materials</i>, 2010,22(17),1954.<br />
					 					 
				 
												
					24 
					 
					 Cote L J, Kim J, Tung V C, et al.<i>Pure and Applied Chemistry</i>, 2011,83(1),95.<br />
					 					 
				 
												
					25 
					 
					 Hung W S, An Q F, De Guzman M, et al.<i>Carbon</i>, 2014,68,670.<br />
					 					 
				 
												
					26 
					 
					 Xu Z W, Zhang J G, Shan M J, et al. <i>Journal of Membrane Science</i>, 2014,458,1.<br />
					 					 
				 
												
					27 
					 
					 Ayyaru S,Ahn Y H. <i>Journal of Membrane Science</i>, 2017,525,210.<br />
					 					 
				 
												
					28 
					 
					 Zhao H Y, Wu L G, Zhou Z J, et al. <i>Physical Chemistry Chemical Phy-sics</i>, 2013,15(23),9084.<br />
					 					 
				 
												
					29 
					 
					 Wu H Q, Tang B B,Wu P Y. <i>Journal of Membrane Science</i>, 2014,451,94.<br />
					 					 
				 
												
					30 
					 
					 Yu L, Zhang Y T, Zhang B, et al. <i>Journal of Membrane Science</i>, 2013,447,452.<br />
					 					 
				 
												
					31 
					 
					 Ghaemi N, Zereshki S,Heidari S.<i>Process Safety & Environmental Protection</i>, 2017,111,475.<br />
					 					 
				 
												
					32 
					 
					 Xie Q L, Zhang S S, Xiao Z Y, et al. <i>RSC Advances</i>, 2017,7(30),18755.<br />
					 					 
				 
												
					33 
					 
					 Zhang J G, Xu Z W, Shan M J, et al. <i>Journal of Membrane Science</i>, 2013,448,81.<br />
					 					 
				 
												
					34 
					 
					 Safarpour M, Khataee A,Vatanpour V.<i>Separation and Purification Technology</i>, 2015,140,32.<br />
					 					 
				 
												
					35 
					 
					 Huang Y, Xiao C F, Huang Q L, et al. <i>Journal of Membrane Science</i>, 2018,548,184.<br />
					 					 
				 
												
					36 
					 
					 Ying T C, Mahmoudi E, Mohammad A W, et al. <i>Desalination</i>, 2017,402,123.<br />
					 					 
				 
												
					37 
					 
					 Xu H, Ding M, Liu S, et al. <i>Polymer</i>, 2017,117,198.<br />
					 					 
				 
												
					38 
					 
					 Vatanpour V, Shockravi A, Zarrabi H, et al. <i>Journal of Industrial and Engineering Chemistry</i>, 2015,30,342.<br />
					 					 
				 
												
					39 
					 
					 Zhao Q Q, Hou J W, Shen J N, et al. <i>Journal of Materials Chemistry A</i>, 2015,3(36),18696.<br />
					 					 
				 
												
					40 
					 
					 Ouyang G, Hussain A, Li J B, et al. <i>RSC Advances</i>, 2015,5(86),70448.<br />
					 					 
				 
												
					41 
					 
					 Ma J, Guo X, Ying Y, et al. <i>Chemical Engineering Journal</i>, 2016,313,890.<br />
					 					 
				 
												
					42 
					 
					 Makhetha T A,Moutloali R M. <i>Journal of Membrane Science</i>, 2018,554,195.<br />
					 					 
				 
												
					43 
					 
					 Lau W J, Ismail A F, Misdan N, et al. <i>Desalination</i>, 2012,287,190.<br />
					 					 
				 
												
					44 
					 
					 Pan Y Y, Xu R P, Lu Z H, et al. <i>Journal of Membrane Science</i>, 2017,523,282.<br />
					 					 
				 
												
					45 
					 
					 Ji Y L, An Q F, Guo Y S, et al. <i>Journal of Materials Chemistry A</i>, 2016,4(11),4224.<br />
					 					 
				 
												
					46 
					 
					 Misdan N, Ismail A F,Hilal N. <i>Desalination</i>, 2016,380,105.<br />
					 					 
				 
												
					47 
					 
					 Tang Y J, Xu Z L, Xue S M, et al. <i>Journal of Membrane Science</i>, 2016,498,374.<br />
					 					 
				 
												
					48 
					 
					 Cheng X Q, Liu Y Y, Guo Z H, et al.<i>Journal of Membrane Science</i>, 2015,493,156.<br />
					 					 
				 
												
					49 
					 
					 Lai G S, Lau W J, Goh P S, et al.<i>Desalination</i>, 2016,387,14.<br />
					 					 
				 
												
					50 
					 
					 Liu Q,Xu G R. <i>Desalination</i>, 2016,394,162.<br />
					 					 
				 
												
					51 
					 
					 Ali M E A, Wang L Y, Wang X Y, et al.<i>Desalination</i>, 2016,386,67.<br />
					 					 
				 
												
					52 
					 
					 Yin J, Zhu G C,Deng B L. <i>Desalination</i>, 2016,379,93.<br />
					 					 
				 
												
					53 
					 
					 Chae H R, Lee J, Lee C H, et al. <i>Journal of Membrane Science</i>, 2015,483,128.<br />
					 					 
				 
												
					54 
					 
					 He L, Dumee L F, Feng C F, et al. <i>Desalination</i>, 2015,365,126.<br />
					 					 
				 
												
					55 
					 
					 Wang J, Zhao C W, Wang T, et al.<i>RSC Advances</i>, 2016,6(85),82174.<br />
					 					 
				 
												
					56 
					 
					 Bano S, Mahmood A, Kim S J, et al. <i>Journal of Materials Chemistry A</i>, 2015,3(5),2065.<br />
					 					 
				 
												
					57 
					 
					 Xia S J, Yao L J, Zhao Y, et al.<i>Chemical Engineering Journal</i>, 2015,280,720.<br />
					 					 
				 
												
					58 
					 
					 Xue S M, Ji C H, Xu Z L, et al. <i>Journal of Membrane Science</i>, 2018,545,185.<br />
					 					 
				 
												
					59 
					 
					 Xie Q, Shao W, Zhang S, et al. <i>RSC Advances</i>, 2017,7(86),54898.<br />
					 					 
				 
												
					60 
					 
					 Shao L, Cheng X Q, Wang Z X, et al.<i>Journal of Membrane Science</i>, 2014,452,82.<br />
					 					 
				 
												
					61 
					 
					 Ding R, Zhang H Q, Li Y F, et al. <i>Chemical Engineering Science</i>, 2015,138,227.<br />
					 					 
				 
												
					62 
					 
					 Lee J, Jang J H, Chae H R, et al. <i>Journal of Materials Chemistry A</i>, 2015,3(44),22053.<br />
					 					 
				 
												
					63 
					 
					 Kim S G, Hyeon D H, Chun J H, et al.<i>Desalination and Water Treatment</i>, 2013,51(31-33),6338.<br />
					 					 
				 
												
					64 
					 
					 Chae H R, Lee C H, Park P K, et al. <i>Journal of Membrane Science</i>, 2017,525,99.<br />
					 					 
				 
												
					65 
					 
					 Park M J, Phuntsho S, He T, et al. <i>Journal of Membrane Science</i>, 2015,493,496.<br />
					 					 
				 
												
					66 
					 
					 Perreault F, Tousley M E, Elimelech M.<i>Environmental Science & Techno-logy Letters</i>, 2014,1(1),71.<br />
					 					 
				 
												
					67 
					 
					 Hegab H M, Wimalasiri Y, Ginic-Markovic M, et al. <i>Desalination</i>, 2015,365,99.<br />
					 					 
				 
												
					68 
					 
					 Xu G R, Wang S H, Zhao H L, et al.<i>Journal of Membrane Science</i>, 2015,493,428.<br />
					 					 
				 
												
					69 
					 
					 Wang Q, Guo X Y, Shao H Q, et al. <i>Progress in Chemistry</i>, 2015,27(10),1470(in Chinese).<br />
					 					 
				 
												
					 
					 王茜, 郭晓燕, 邵怀启, 等.化学进展, 2015,27(10),1470.<br />
					 					 
				 
												
					70 
					 
					 Dai H W, Xu Z J,Yang X N. <i>Journal of Physical Chemistry C</i>, 2016,120(39),22585.<br />
					 					 
				 
												
					71 
					 
					 Tsou C H, An Q F, Lo S C, et al.<i>Journal of Membrane Science</i>, 2015,477,93.<br />
					 					 
				 
												
					72 
					 
					 Choi W, Choi J, Bang J, et al.<i>ACS Applied Materials & Interfaces</i>, 2013,5(23),12510.<br />
					 					 
				 
												
					73 
					 
					 Wang N X, Ji S L, Zhang G J, et al. <i>Chemical Engineering Journal</i>, 2012,213,318.<br />
					 					 
				 
												
					74 
					 
					 Nan Q, Li P,Cao B.Applied Surface Science,2016,387,521.<br />
					 					 
				 
												
					75 
					 
					 Wang T, Lu J R, Mao L L, et al. Journal of Membrane Science,2016,515,125.<br />
					 					 
				 
												
					76 
					 
					 Zhao J, Zhu Y W, Pan F S, et al. Journal of Membrane Science,2015,487,162.<br />
					 					 
				 
												
					77 
					 
					 Hu M,Mi B X. Journal of Membrane Science,2014,469,80.<br />
					 					 
				 
												
					78 
					 
					 Salehi H, Rastgar M,Shakeri A. Applied Surface Science,2017,413,99.<br />
					 					 
				 
												
					79 
					 
					 Hu M,Mi B X. Environmental Science & Technology,2013,47(8),3715.<br />
					 					 
				 
												
					80 
					 
					 Xia S J, Ni M, Zhu T R, et al. Desalination,2015,371,78.<br />
					 					 
				 
												
					81 
					 
					 Jiang Y, Wang W N, Liu D, et al. Environmental Science & Technology,2015,49(11),6846.<br />
					 					 
				 
												
					82 
					 
					 Soroush A, Ma W, Silvino Y, et al. Environmental Science Nano,2015,2(4),395.<br />
					 					 
				 
												
					83 
					 
					 Zhang Y, Zhang S,Chung T S. Environmental Science & Technology,2015,49(16),10235.<br />
					 					 
				 
												
					84 
					 
					 Zhang Y, Zhang S, Gao J, et al.Journal of Membrane Science,2016,515,230.
					 					 
				 
																																		
									             
									            									            												
											
														
															
																
																	
																																																																																																																						
																							[1] 
																							Bingwei LUO,Dabo LIU,Fei LUO,Ye TIAN,Dongsheng CHEN,Haitao ZHOU. Research on the Two Typical Infrared Detection Materials Serving at Low Temperatures: a Review  
																						 
																																																																																																																																																																
																							[2] 
																							Huimin PAN,Jun FU,Qingxin ZHAO. Sulfate Attack Resistance of Concrete Subjected to Disturbance in Hardening Stage  
																						 
																																																																																																																																																																
																							[3] 
																							Siyuan ZHOU,Jianfeng JIN,Lu WANG,Jingyi CAO,Peijun YANG. Multiscale Simulation of Geometric Effect on Onset Plasticity of Nano-scale Asperities  
																						 
																																																																																																																																																																
																							[4] 
																							Xu LI,Ziru WANG,Li YANG,Zhendong ZHANG,Youting ZHANG,Yifan DU. Synthesis and Performance of Magnetic Oil Absorption Material with Rice Chaff Support  
																						 
																																																																																																																																																																
																							[5] 
																							Ninghui LIANG,Peng YANG,Xinrong LIU,Yang ZHONG,Zheqi GUO. A Study on Dynamic Compressive Mechanical Properties of Multi-size Polypropylene Fiber Concrete Under High Strain Rate  
																						 
																																																																																																																																																																
																							[6] 
																							XU Zhichao, FENG Zhongxue, SHI Qingnan, YANG Yingxiang, WANG Xiaoqi, QI Huarong. Microstructure of the LPSO Phase in Mg98.5 Zn0.5 Y1  Alloy Prepared by Directional Solidification and Its Effect on Electromagnetic Shielding Performance  
																						 
																																																																																																																																																																
																							[7] 
																							ZHOU Rui, LI Lulu, XIE Dong, ZHANG Jianguo, WU Mengli. A Determining Method of Constitutive Parameters for Metal Powder Compaction Based on Modified Drucker-Prager Cap Model  
																						 
																																																																																																																																																																
																							[8] 
																							WANG Tong, BAO Yan. Advances on Functional Polyacrylate/Inorganic Nanocomposite Latex for Leather Finishing  
																						 
																																																																																																																																																																
																							[9] 
																							HUANG Dajian, MA Zonghong, MA Chenyang, WANG Xinwei. Preparation and Properties of Gelatin/Chitosan Composite Films Enhanced by Chitin Nanofiber  
																						 
																																																																																																																																																																
																							[10] 
																							YUAN Xinjian, LI Ci, WANG Haodong, LIANG Xuebo, ZENG Dingding, XIE Chaojie. Effects of Micro-alloying of Chromium and Vanadium on Microstructure and Mechanical Properties of High Carbon Steel  
																						 
																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																																									
																 
															 
														
												 
											
												
											    	
											        	Viewed  
													
											        	 
											      	
												        
												        	Full text 
 
											        	
												        	
												        	
												          	
														 
													 
													
												         
													
												        
												        	Abstract 
 
												        
															
															
															
												         
													 
													
												         
													
												        Cited 
												        	
												         
													 
													
												         
													
													      
													    Shared     
												  	
													     
											  		
													      
													    Discussed