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通过聚合物电解质共混和施加电场力制备的仿生梯度材料。

Bioinspired gradient materials via blending of polymer electrolytes and applying electric forces.

作者信息

Bronstein Lyudmila M, Ivanovskaya Anna, Mates Tom, Holten-Andersen Niels, Stucky Galen D

机构信息

Department of Chemistry, Indiana University, Bloomington, Indiana 47405, USA.

出版信息

J Phys Chem B. 2009 Jan 22;113(3):647-55. doi: 10.1021/jp8071348.

Abstract

Free-standing and supported films with a lateral gradient in composition were prepared using blends of poly(acrylic acid) (PAA)/sodium salt and its copolymers with acrylamide (AAm) in an applied electric field. The gradients were stabilized by complexation of carboxylate groups with metal species. To find the favorable conditions and components for successful blending and interaction with Fe and Ce species, we studied blending of the two PAA samples with molecular weights of 2000 and 15 000 Da with two copolymers of AA and AAm (with 10 and 70 wt % of AA units) and interaction of these blends with Fe(III) and Ce(IV) ions. The structure of the hybrid (blend) films was studied using differential scanning calorimetry (DSC), X-ray photoelectron spectroscopy (XPS), UV-vis spectroscopy, X-ray diffraction, and optical microscopy. To ensure blend miscibility and efficient interaction with metal ions, the copolymer containing 70 wt % AA units has been used. The surface enrichment with metal species was observed at all experimental conditions studied in this work. For lateral gradient film formation, 15 000 Da PAA has been used to avoid uneven distribution of the homopolymer in the film, observed for 2000 Da PAA. The gradient films were characterized by XPS. The lateral gradient of functionality such as COONa group or Fe content has been obtained at different strengths of electric field applied during film formation. The use of lower voltage allows one to prevent NaOH formation and creates more favorable conditions for development of a gradient polymer film. The Ce content gradient was not observed due to formation of large Ce oxide particles (> or = 750 nm), masking the gradient of functionality. For the first time, free-standing films with a lateral gradient in composition were prepared using an applied electric field.

摘要

利用聚(丙烯酸)(PAA)/钠盐及其与丙烯酰胺(AAm)的共聚物在施加电场的情况下制备了具有成分横向梯度的自支撑膜和支撑膜。通过羧酸根基团与金属物种的络合使梯度得以稳定。为了找到成功共混以及与铁和铈物种相互作用的有利条件和成分,我们研究了两种分子量分别为2000和15000 Da的PAA样品与两种AA和AAm共聚物(AA单元含量分别为10 wt%和70 wt%)的共混情况,以及这些共混物与Fe(III)和Ce(IV)离子的相互作用。使用差示扫描量热法(DSC)、X射线光电子能谱(XPS)、紫外可见光谱、X射线衍射和光学显微镜对杂化(共混)膜的结构进行了研究。为确保共混物的混溶性以及与金属离子的有效相互作用,使用了AA单元含量为70 wt%的共聚物。在本工作所研究的所有实验条件下均观察到了金属物种的表面富集现象。对于横向梯度膜的形成,使用15000 Da的PAA以避免在膜中观察到的2000 Da PAA均聚物的不均匀分布。用XPS对梯度膜进行了表征。在成膜过程中施加的不同电场强度下获得了诸如COONa基团或铁含量等功能的横向梯度。使用较低电压可以防止NaOH的形成,并为梯度聚合物膜的形成创造更有利的条件。由于形成了大的氧化铈颗粒(≥750 nm),掩盖了功能梯度,未观察到铈含量梯度。首次利用施加电场制备了具有成分横向梯度的自支撑膜。

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