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Speciation of chitosan with low and high molecular weight carboxylates in aqueous solution

机译:水溶液中低分子量和高分子量羧酸盐的壳聚糖的形态

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Quantitative data on the speciation of chitosan (310 kDa) with low and high molecular weight carboxylates in aqueous solution are reported. The following carboxylic ligands were considered: monocarboxylate (butyrate); dicarboxylates (malonate, succinate, azelate); tricarboxylate (1,2,3-propane-tricarboxylate); tetracarboxylate (1,2,3,4-butanetetracarboxylate); polyacrylates (2.0 and 20 kDa); polymethacrylate (5.4 kDa). The investigation was performed by potentiometry at t = 25 degrees C, at low ionic strength (without addition of supporting electrolyte) and at I = 0.15 mol L-1 (NaCl). For all the systems the formation of (chitosan) LHi species was found (L = carboxylic ligand; i = 1 to 4 depending on the carboxylic ligand considered). The stability of proton-chitosan-carboxylate species depends on the number of carboxylic groups involved in the complexation, and it was possible to calculate a rough free energy value per bond Delta G(n) =-15 +/- 2kJ mol(-1). By using the stability data, the quantitative sequestering capacity of chitosan towards the carboxylates here considered [expressed as the-log(total chitosan concentration) necessary to bind 50% of carboxylate, i. e., pL(50)] was calculated for different pH values, at low ionic strength and at I = 0.15 mol L-1. The pL50 values, ranging from 3 to 7, show that chitosan is quite a strong sequestering agent towards carboxylates. Evidences were also obtained for the different behaviour between low and high molecular weight carboxylates.
机译:报告了水溶液中低分子量和高分子量羧酸盐对壳聚糖(310 kDa)形态的定量数据。考虑了以下羧基配体:单羧酸盐(丁酸酯);二羧酸盐(丙二酸酯,琥珀酸酯,壬二酸酯);三羧酸盐(1,2,3-丙烷三羧酸盐);四羧酸盐(1,2,3,4-丁烷四羧酸盐);聚丙烯酸酯(2.0和20 kDa);聚甲基丙烯酸酯(5.4 kDa)。通过电位计在t = 25摄氏度,低离子强度(不添加支持电解质)和I = 0.15 mol L-1(NaCl)的条件下进行研究。对于所有系统,都发现了(壳聚糖)LHi物种的形成(L =羧基配体;根据所考虑的羧基配体,i = 1-4)。质子-壳聚糖-羧酸盐种类的稳定性取决于络合中所含羧基的数目,并且可以计算每个键的粗糙自由能值Delta G(n)= -15 +/- 2kJ mol(-1 )。通过使用稳定性数据,此处认为壳聚糖对羧酸盐的定量螯合能力[表示为结合50%的羧酸盐即壳聚糖所需的对数(总壳聚糖浓度)。例如,在低离子强度和I = 0.15 mol L-1的条件下,针对不同的pH值计算pL(50)。 pL50值在3到7之间,表明壳聚糖是一种很强的螯合剂,可阻止羧酸盐的生成。还获得了低分子量和高分子量羧酸盐之间不同行为的证据。

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