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通过表面接枝聚电解质的疏水塌陷可逆调节导电聚合物纳米薄膜的氧化还原活性。

Reversible modulation of the redox activity in conducting polymer nanofilms induced by hydrophobic collapse of a surface-grafted polyelectrolyte.

机构信息

Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas (INIFTA), Departamento de Química - Facultad de Ciencias Exactas, Universidad Nacional de La Plata (UNLP), CONICET, 64 and 113, La Plata 1900, Argentina; Instituto de Investigación e Ingeniería Ambiental, Universidad Nacional de San Martín, 25 de Mayo y Francia, 1 piso (1650), Buenos Aires, Argentina.

Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas (INIFTA), Departamento de Química - Facultad de Ciencias Exactas, Universidad Nacional de La Plata (UNLP), CONICET, 64 and 113, La Plata 1900, Argentina.

出版信息

J Colloid Interface Sci. 2018 May 15;518:92-101. doi: 10.1016/j.jcis.2018.02.014. Epub 2018 Feb 7.

Abstract

We present the covalent modification of a Pani-like conducting polymer (polyaminobenzylamine, PABA) by grafting of a polyelectrolyte brush (poly [2-(methacryloyloxy)-ethyl-trimethylammonium chloride], PMETAC). As PABA has extra pendant amino moieties, the grafting procedure does not affect the backbone nitrogen atoms that are implicated in the electronic structure of the conducting polymers. Moreover, perchlorate anions interact very strongly with the quaternary ammonium pendant groups of PMETAC through ion pairing. Therefore, the grafting does not only keep the electroactivity of PABA in aqueous solutions but it adds the ion-actuation properties of the PMETAC brush to the modified electrode as demonstrated by contact angle measurements and electrochemical methods. In this way, the conjugation of the electron transfer properties of the conducting polymer with the anion responsiveness of the integrated brush renders perchlorate actuation of the electrochemical response. These results constitute a rational integration of nanometer-sized polymer building blocks that yields synergism of functionalities and illustrate the potentialities of nanoarchitectonics for pushing the limits of soft material science into the nanoworld.

摘要

我们通过接枝聚电解质刷(聚[2-(甲基丙烯酰氧基)乙基三甲基氯化铵],PMETAC)来展示类似 Pani 的导电聚合物(聚胺苯甲胺,PABA)的共价修饰。由于 PABA 具有额外的侧链氨基部分,接枝过程不会影响到涉及导电聚合物电子结构的主链氮原子。此外,高氯酸根阴离子通过离子配对与 PMETAC 的季铵侧基非常强烈地相互作用。因此,接枝不仅保持了 PABA 在水溶液中的电活性,而且通过接触角测量和电化学方法证明了 PMETAC 刷的离子驱动特性被添加到修饰电极中。通过这种方式,将导电聚合物的电子转移性质与集成刷的阴离子响应性结合起来,使电化学响应受到高氯酸根的驱动。这些结果构成了纳米级聚合物构建块的合理整合,产生了功能的协同作用,并说明了纳米结构在将软物质科学的极限推向纳米世界方面的潜力。

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