Citation:
	            
		            Tianliang  Lu, Zhongtian  Du, Junxia  Liu, Chen  Chen, Jie  Xu. Dehydrogenation of primary aliphatic alcohols to aldehydes over Cu-Ni bimetallic catalysts[J]. Chinese Journal of Catalysis,
							;2014, 35(12): 1911-1916.
						
							doi:
								10.1016/S1872-2067(14)60208-4
						
					
				
					
				
	        
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	                	The catalytic conversion of non-activated primary aliphatic alcohols to aldehydes is a challenge, and monometallic Cu-based catalysts loaded on different supports have often been used for these reactions. Cu-Ni/γ-Al2O3 bimetallic catalysts were prepared and used for anaerobic dehydrogenation of 3,3-dimethyl-1-butanol to 3,3-dimethyl-1-butanal. These catalysts exhibited higher activity than Cu/γ-Al2O3 under the same reaction conditions, and a wide range of primary aliphatic alcohols were efficiently converted to the corresponding aldehydes over Cu-Ni/γ-Al2O3 under mild conditions.
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								Keywords:
								
 - Primary aliphatic alcohol,
 - Aldehyde,
 - Copper-nickel,
 - Catalysis,
 - Dehydrogenation
 
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                    [1]
                
			
[1] Mallat T, Baiker A. Chem Rev, 2004, 104: 3037
 - 
			
                    [2]
                
			
[2] Du Z T, Ma J P, Ma H, Gao J, Xu J. Green Chem, 2010, 12: 590
 - 
			
                    [3]
                
			
[3] Sádaba I, Gorbanev Y Y, Kegnæs S, Putluru S S R, Berg R W, Riisager A. ChemCatChem, 2013, 5: 284
 - 
			
                    [4]
                
			
[4] Lu T L, Du Z T, Liu J X, Ma H, Xu J. Green Chem, 2013, 15: 2215
 - 
			
                    [5]
                
			
[5] Mitsudome T, Mikami Y, Funai H, Mizugaki T, Jitsukawa T, Kaneda K. Angew Chem Int Ed, 2008, 47: 138
 - 
			
                    [6]
                
			
[6] Zaccheria F, Ravasio N, Psaro R, Fusi A. Chem Commun, 2005: 253
 - 
			
                    [7]
                
			
[7] Marella R K, Neeli C K P, Kamaraju S R R, Burri D R. Catal Sci Technol, 2012, 2: 1833
 - 
			
                    [8]
                
			
[8] Mitsudome T, Mikami Y, Ebata K, Mizugaki T, Jitsukawa K, Kaneda K. Chem Commun, 2008: 4804
 - 
			
                    [9]
                
			
[9] Shi R J, Wang F, Tana, Li Y, Huang X M, Shen W J. Green Chem, 2010, 12: 108
 - 
			
                    [10]
                
			
[10] Wang F, Shi R J, Liu Z Q, Shang P J, Pang X Y, Shen S, Feng Z C, Li C, Shen W J. ACS Catal, 2013, 3: 890
 - 
			
                    [11]
                
			
[11] Shi R J, Wang F, Mu X L, Tana, Li Y, Huang X M, Shen W J. Chin J Catal (师瑞娟, 王非, 牟效玲, 塔娜, 李勇, 黄秀敏, 申文杰. 催化学报), 2010, 31: 626
 - 
			
                    [12]
                
			
[12] Yang Y L, Du Z T, Huang Y Z, Lu F, Wang F, Gao J, Xu J. Green Chem, 2013, 15: 1932
 - 
			
                    [13]
                
			
[13] Mahata N, Cunha A F, Órfão J J M, Figueiredo J L. Chem Eng J, 2012, 188: 155
 - 
			
                    [14]
                
			
[14] Yin A Y, Wen C, Guo X Y, Dai W L, Fan K N. J Catal, 2011, 280: 77
 - 
			
                    [15]
                
			
[15] Asedegbega-Nieto E, Bachiller-Baeza B, Guerrero-Ruíz A, Rodríguez-Ramos I. Appl Catal A, 2006, 300: 120
 - 
			
                    [16]
                
			
[16] Nofre C, Tinti J M. Food Chem, 2000, 69: 245
 
 - 
			
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