Department of Chemistry, Michigan State University , East Lansing, Michigan 48824, United States.
Langmuir. 2013 Oct 15;29(41):12720-9. doi: 10.1021/la402633x. Epub 2013 Oct 3.
Layer-by-layer adsorption of protonated poly(allylamine) (PAH) and deprotonated poly(N,N-dicarboxymethylallylamine) (PDCMAA) yields thick films with a high density of iminodiacetic acid (IDA) ligands that bind metal ions. When film deposition occurs at pH 3.0, PAH/PDCMAA bilayer thicknesses reach 200 nm, and Cu(2+) binding capacities are 2.5 mmol per cm(3) of film. (PAH/PDCMAA)10 films deposited at pH 3.0 are 4-8-fold thicker than films formed at pH 5.0, 7.0, or 9.0, presumably because of the low charge density on PDCMAA chains at pH 3.0. However, with normalization to film thickness, all films bind similar amounts of Cu(2+) from pH 4.1 solutions of CuSO4. In micrometer-thick films, equilibration of binding sites with Cu(2+) requires ~4 h due to a low Cu(2+) diffusion coefficient (2.6 × 10(-12) cm(2)/s). Sorption isotherms determined at several temperatures show that Cu(2+) binding is endothermic with a positive entropy (binding constants increase with increasing temperature), presumably because metal-ion complexation involves displacement of both a proton from IDA and water molecules from Cu(2+). (PAH/PDCMAA)10 films retain their binding capacity over four absorption/elution cycles and may prove useful in metal-ion scavenging, catalysis, and protein binding.
层层吸附质子化的聚烯丙胺(PAH)和去质子化的聚(N,N-二羧甲基烯丙胺)(PDCMAA)可得到具有高密度亚氨基二乙酸(IDA)配体的厚膜,这些配体可结合金属离子。当在 pH 3.0 下进行薄膜沉积时,PAH/PDCMAA 双层厚度达到 200nm,并且 Cu(2+)结合容量约为每立方厘米薄膜 2.5mmol。(PAH/PDCMAA)10 薄膜在 pH 3.0 下沉积的厚度是在 pH 5.0、7.0 或 9.0 下形成的薄膜的 4-8 倍,这可能是因为在 pH 3.0 下 PDCMAA 链的电荷密度较低。然而,与薄膜厚度归一化后,所有薄膜从 pH 4.1 的 CuSO4 溶液中结合的 Cu(2+)量相似。在微米厚的薄膜中,由于 Cu(2+)扩散系数(约 2.6×10(-12)cm(2)/s)较低,与 Cu(2+)平衡结合位点需要约 4 小时。在几个温度下确定的吸附等温线表明,Cu(2+)的结合是吸热的,具有正熵(结合常数随温度升高而增加),这可能是因为金属离子络合涉及从 IDA 中置换质子和从 Cu(2+)中置换水分子。(PAH/PDCMAA)10 薄膜在四个吸收/洗脱循环中保留其结合能力,并且可能在金属离子清除、催化和蛋白质结合方面具有用途。