Wu Jingwei, Pourdeyhimi Behnam, Yarin Alexander L
Department of Mechanical and Industrial Engineering, University of Illinois Chicago, 842 W. Taylor St., Chicago, IL, 60607-7022, USA.
The Nonwovens Institute, North Carolina State University, 1010 Main Campus Drive, Raleigh, NC, 27606, USA.
Macromol Rapid Commun. 2025 Jul;46(13):e2400861. doi: 10.1002/marc.202400861. Epub 2024 Nov 29.
In this study, the development of novel pH-responsive and dual thermo- and pH-responsive filter materials is described. The dual-responsive system combines poly(N-isopropylacrylamide) (PNIPAM) for temperature sensitivity and poly(acrylic acid) (PAA) for pH responsiveness, which offers dynamic filtration capabilities tailored to environmental changes. PNIPAM is a thermo-responsive polymer that undergoes significant conformational changes in response to temperature variations. The present work integrates PNIPAM's temperature sensitivity with the pH-responsive properties of PAA, a versatile polymer widely recognized for its ability to change its conformation in response to pH variations. The dual materials developed here undergo conformational changes at specific temperatures and pH levels, modifying their hydrophilicity, pore size, and permeability. In particular, when exposed to higher temperatures, PNIPAM transitions from a hydrated, expanded state to a dehydrated, collapsed state, directly influencing the flow rate and selectivity of the filter medium that comprises it. On the other hand, PAA responds to pH changes by ionizing or deprotonating, causing swelling or shrinkage that alters the filtration performance of the media with embedded PAA. This dual responsiveness allows for the development of advanced filtration systems that can adapt to varying environmental conditions, optimize the capture of specific contaminants, and reduce fouling.
在本研究中,描述了新型pH响应型以及热和pH双重响应型过滤材料的开发。这种双重响应系统结合了具有温度敏感性的聚(N-异丙基丙烯酰胺)(PNIPAM)和具有pH响应性的聚(丙烯酸)(PAA),它提供了根据环境变化量身定制的动态过滤能力。PNIPAM是一种热响应聚合物,会随着温度变化发生显著的构象变化。目前的工作将PNIPAM的温度敏感性与PAA的pH响应特性相结合,PAA是一种通用聚合物,因其能够根据pH变化改变构象而广为人知。这里开发的双材料在特定温度和pH水平下会发生构象变化,从而改变其亲水性、孔径和渗透性。特别是,当暴露于较高温度时,PNIPAM会从水合、膨胀状态转变为脱水、塌陷状态,直接影响包含它的过滤介质的流速和选择性。另一方面,PAA通过电离或去质子化对pH变化做出响应,导致膨胀或收缩,从而改变含有PAA的介质的过滤性能。这种双重响应性使得能够开发出先进的过滤系统,该系统可以适应不同的环境条件,优化对特定污染物的捕获,并减少污染。