Citation:
	            
		            WAN  Jun-min, HU  Zhi-wen, CHEN  Wen-xing, ZHENG  Shi-rui, LU  Sheng-shui, ZHANG  Li. Molecular Inclusion Recognition of Dihydroxybenzenes by Cellulose Fibre Grated β-cyclodextrin[J]. Acta Physico-Chimica Sinica,
							;2006, 22(02): 244-248.
						
							doi:
								10.3866/PKU.WHXB20060223
						
					
				
					
				
	        
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	                	The complex stability constants for the 1∶1 inclusion complexation of various dihydroxybenzenes (pyrocatechol, hydroquinone, resorcinol) with cellulose fibre grafted β-cyclodextrin have been determined by means of spectrophotometric titrations at different temperatures in aqueous solutions with different pH values. The molecular recognition mechanism for various complexes of dihydroxybenzenes and β-cyclodextrin is discussed from the viewpoint of stability constants, apparent thermodynamic parameters, the size/shape-fit, multiple recognition, and pH value of inclusion systems of dihydroxybenzenes between the host cavity and the guest molecules. The results show that the cellulose fibre grafted β-cyclodextrin possesses a special binding ability and molecular selectivity for dihydroxybenzenes, the complex stability constants of dihydroxybenzenes are Ka(resorcinol)>Ka(hydroquinone)>Ka(pyrocatechol), apparent thermodynamic parameters of dihydroxybenzenes are ΔH(resorcinol )<ΔH(hydroquinone)<ΔH(pyrocatechol) and ΔS(resorcinol)<ΔS(hydroquinone)< ΔS(pyrocatechol).
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