首页> 外文期刊>Physical chemistry chemical physics: PCCP >Reversible hydration and dehydration of polyanionic brushes bearing carboxylate, phosphate and sulfonate side groups: a comparative AFM study
【24h】

Reversible hydration and dehydration of polyanionic brushes bearing carboxylate, phosphate and sulfonate side groups: a comparative AFM study

机译:带有羧酸根,磷酸根和磺酸根侧基的聚阴离子刷的可逆水合和脱水:AFM对比研究

获取原文
获取原文并翻译 | 示例
           

摘要

The present work reports on a systematic study of the swelling/collapse transition of three anionic polymer brushes bearing carboxylate, phosphate and sulfonate side groups via AFM measurement. Time scale of conformation change process can be approximately evaluated directly. All the three brushes in their sodium salt forms stretch away from the surface in pure water, as a result of charge repulsion and uptake of water. The collapse of weak brushes has two ways: normal charge screening and precipitation (strong ion pairing), depending on the types of cations that have different coordination capabilities with anionic groups. Alkali metal ions can make brushes shrink only at relatively high concentrations following a gradually increased charge screening mechanism. The brushes collapsed in this way can be restored by simply flushing with water. However, multivalent cations can irreversibly collapse brushes more easily even under very low concentrations (< 10~(-3) mol L~(-1)). The brushes cannot be restored with simple water rinsing even for strong sulfonate containing brushes. In this case, recovery can be achieved by ion exchange in concentrated salt solution, which facilitates transit from strong ion pairing to less strong charge screening and then flushing with water. Alternatively, the multivalent ion can be extracted with chelating reagent of low concentration (10 mM EDTA). As the chelating agent doesn't affect the conformation of brushes, the brushes are one-step recovered directly, much more efficient than with high concentration electrolyte which usually requires extra water rinsing to remove excess salt inside brushes. The interaction between anions in the brushes and metal ions represents a model system to profoundly understand the mechanism of bio-mimic motions and how muscle works. In this regard, the present study provides useful information for the development of polyelectrolyte brushes based ion sensor and ion powered nanoactuators.
机译:本工作报告了通过AFM测量对三种带有羧酸根,磷酸根和磺酸根侧基的阴离子聚合物刷的膨胀/塌陷转变的系统研究。构象变化过程的时间尺度可以直接进行近似评估。由于电荷排斥和水的吸收,所有三支钠盐形式的刷子在纯水中都从表面伸展开。弱电刷的崩溃有两种方式:正常的电荷筛选和沉淀(强离子对),取决于与阴离子基团具有不同配位能力的阳离子的类型。碱金属离子只能随着电荷屏蔽机制的逐渐增加而使刷子仅在相对较高的浓度下收缩。只需用水冲洗即可恢复以这种方式塌陷的刷子。但是,即使在非常低的浓度(<10〜(-3)mol L〜(-1))下,多价阳离子也更容易使刷子不可逆转地塌陷。即使对于含有强磺酸盐的刷子,也无法通过简单的水冲洗来恢复刷子。在这种情况下,可通过在浓盐溶液中进行离子交换来实现回收,这有利于从强离子对过渡到次强电荷屏蔽,然后用水冲洗。或者,可用低浓度的螯合剂(10 mM EDTA)提取多价离子。由于螯合剂不影响刷子的结构,刷子可直接一步回收,比使用高浓度电解液的效率要高得多,后者通常需要额外的水冲洗以除去刷子内多余的盐分。刷子中的阴离子与金属离子之间的相互作用代表了一个模型系统,可深刻理解仿生运动的机制以及肌肉的工作方式。在这方面,本研究为基于离子传感器和离子动力纳米致动器的聚电解质电刷的开发提供了有用的信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号