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pH响应性聚电解质多层膜中的相分离:电荷挤出与电荷排出

Phase separations in pH-responsive polyelectrolyte multilayers: charge extrusion versus charge expulsion.

作者信息

Sui Zhijie, Schlenoff Joseph B

机构信息

Department of Chemistry and Biochemistry, Center for Materials Research and Technology (MARTECH), The Florida State University, Tallahassee, Florida 32306-4390, USA.

出版信息

Langmuir. 2004 Jul 6;20(14):6026-31. doi: 10.1021/la0495985.

Abstract

Polyelectrolyte multilayers with continuously variable amounts of ionizable weak acid functionality were prepared by blending ionizable and nonionizable polyelectrolytes in the deposition solutions. Diluting ionizable groups in this way yielded multilayers that were more structurally stable, shown by thickness and atomic force microscopy measurements, as their internal polymer charge was varied by the pH of the external solution. Multilayers prepared with opposite surface charge to that appearing within the bulk (as a result of ionization) were more stable, as were thinner films, both results suggesting the extrusion of bulk charge to the surface. These multilayers were able to control the direction and magnitude of electroosmotic flow in microfluidics systems. Multilayers bearing only one, diluted layer ofionizable material were surprisingly effective in this respect.

摘要

通过在沉积溶液中混合可电离和不可电离的聚电解质,制备了具有连续可变数量可电离弱酸官能团的聚电解质多层膜。以这种方式稀释可电离基团得到的多层膜在结构上更稳定,厚度和原子力显微镜测量结果表明,由于其内部聚合物电荷随外部溶液的pH值变化。与本体中出现的表面电荷相反(由于电离)制备的多层膜更稳定,较薄的膜也是如此,这两个结果都表明本体电荷向表面的挤出。这些多层膜能够控制微流控系统中电渗流的方向和大小。仅含有一层稀释的可电离材料的多层膜在这方面出人意料地有效。

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