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Base-acid equilibria in polyelectrolyte systems: From weak polvelectrolytes to interpolyelectrolyte complexes and multilayered polyelectrolyte shells

机译:聚电解质体系中的碱平衡:从弱电解质到聚电解质复合物和多层聚电解质壳

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We have measured potentiometric titration curves of the weak polyelectrolytes, PAH(1) and PAA, interpolyelectrolyte complexes PAH-PAA, PDADMAC-PAA, and PAH-PAA, prepared by mixing of the polyelectrolyte solutions, and multilayered microcapsules made by layer-by-layer adsorption of the same pairs of oppositely charged polyelectrolytes onto CaCO3 microspheres-(PAH/PAA)(5), (PDADMAC/PAA)(5), and (PAH/PSS)(5). The data were analyzed within the frame of an Ising model taking into account the nearest-neighbor interaction between proton binding sites. The anticooperative character of proton binding with PAH (cooperativity parameter q = 0.13) was shown to become a highly cooperative process in the interpolyelectrolyte complex PAH-PSS and multilayered microcapsules (PAH/PSS)(5), q approximate to 2-3. The cooperativity of the process is increased also for complexes PDADMAC-PAA and PAH-PAA and for multilayered shells (PDADMAC/PAA)(5) and (PAH/PAA)(5); however, the cooperativity parameter q remains below unity for the PDADMAC-PAA system or a little higher than unity for the PAH-PAA system, indicating their much lower stability in comparison with the classical PAH-PSS system. The apparent pK values of PAH and PAA shift approximately 2-3 units to alkaline (PAH) or to the acidic (PAA) region both in multilayered microcapsules and in their stoichiometric complexes with oppositely charged polyelectrolytes. No essential difference was found between proton binding patterns of multilayered polyelectrolyte microcapsules and interpolyelectrolyte complexes. [References: 68]
机译:我们已经测量了通过混合聚电解质溶液制备的弱聚电解质PAH(1)和PAA,聚电解质间复合物PAH-PAA,PDADMAC-PAA和PAH-PAA的电位滴定曲线,以及通过逐层制备的多层微胶囊CaCO3微球-(PAH / PAA)(5),(PDADMAC / PAA)(5)和(PAH / PSS)(5)上相同的成对的带相反电荷的聚电解质的层吸附。考虑到质子结合位点之间的最近邻相互作用,在Ising模型的框架内分析了数据。质子与PAH结合的抗合作特性(合作性参数q = 0.13)在聚电解质复合物PAH-PSS和多层微胶囊(PAH / PSS)中表现为高度合作过程(5),q约为2-3。对于复合物PDADMAC-PAA和PAH-PAA以及多层壳(PDADMAC / PAA)(5)和(PAH / PAA)(5),该过程的协同性也得到提高。但是,对于PDADMAC-PAA系统,协同参数q保持低于统一性,或者比PAH-PAA系统的协同性参数q略高,这表明与经典PAH-PSS系统相比,其稳定性要低得多。 PAH和PAA的表观pK值在多层微胶囊及其与带相反电荷的聚电解质的化学计量配合物中,向碱性(PAH)或向酸性(PAA)区域偏移约2-3个单位。多层聚电解质微胶囊和质间电解质复合物的质子结合模式之间没有发现本质的区别。 [参考:68]

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