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树枝状聚赖氨酸与 8-苯胺-1-萘磺酸在液-液界面的离子缔合的机理分析。

Mechanistic Analysis of Ion Association between Dendrigraft Poly-l-lysine and 8-Anilino-1-naphthalenesulfonate at Liquid|Liquid Interfaces.

出版信息

Langmuir. 2018 Mar 13;34(10):3237-3243. doi: 10.1021/acs.langmuir.8b00131. Epub 2018 Mar 1.

Abstract

Molecular association between biocompatible dendritic polymers, dendrigraft poly-l-lysines (DGLs), and an anionic fluorescent probe, 8-anilino-1-naphthalenesulfonate (ANS), was studied at the polarized water|1,2-dichloroethane (DCE) interface. The fluorescence intensity of ANS measured in aqueous solution was enhanced by the coexistence of DGLs over a wide pH range (2 < pH < 10), where ANS and DGL exist as a monoanionic form and a polycation, respectively. The voltammetric responses indicated that the positively charged DGLs were adsorbed at the water|DCE interface, whereas ANS was transferred across the interface accompanied by the adsorption process. The interfacial behavior of the DGL-ANS associates was analyzed by potential-modulated fluorescence (PMF) spectroscopy. The PMF results demonstrated that the ion association between DGLs and ANS at the water|DCE interface is strongly affected by the applied potential and the dendritic generation of DGL. By applying appropriate potentials, the ANS anion was dissociated from its ion associate with DGLs at the interface and transferred into the organic phase, whereas DGLs remained in the aqueous phase. The Gibbs free energy of ion association (Δ G) was estimated for the second-fourth generation DGLs (DGL-G2-G4) and the G4 polyamidoamine (PAMAM) dendrimer as a control. The highest stability of the DGL-G4-ANS associate manifested itself through Δ G: DGL-G4-ANS (>G4 PAMAM dendrimer-ANS) > DGL-G3-ANS > DGL-G2-ANS. The results elucidated the efficient anion-binding ability of higher generation DGLs and its potential dependence at the liquid|liquid interface.

摘要

在水|1,2-二氯乙烷(DCE)界面上研究了生物相容性树枝状聚合物、树枝状接枝聚赖氨酸(DGL)与阴离子荧光探针 8-苯胺-1-萘磺酸盐(ANS)之间的分子缔合。在很宽的 pH 值范围内(2 < pH < 10),ANS 和 DGL 分别以单阴离子形式和多阳离子形式存在时,ANS 的荧光强度在水溶液中会因 DGL 的共存而增强。伏安响应表明带正电荷的 DGL 被吸附在水|DCE 界面上,而 ANS 则伴随着吸附过程穿过界面。通过电位调制荧光(PMF)光谱分析了 DGL-ANS 配合物的界面行为。PMF 结果表明,DGL 与 ANS 之间在水|DCE 界面上的离子缔合强烈受施加的电位和 DGL 的树枝状生成的影响。通过施加适当的电位,可以将 ANS 阴离子从与 DGL 的离子缔合物中解离出来并转移到有机相中,而 DGL 则留在水相中。对于第二代到第四代 DGL(DGL-G2-G4)和作为对照的第四代聚酰胺胺(PAMAM)树状大分子,估计了离子缔合的吉布斯自由能(ΔG)。通过 ΔG:DGL-G4-ANS(>G4 PAMAM 树状大分子-ANS)>DGL-G3-ANS>DGL-G2-ANS,证明了 DGL-G4-ANS 配合物具有最高的稳定性。结果阐明了更高代 DGL 具有有效的阴离子结合能力及其在液|液界面上的潜在依赖性。

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