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Updated: Apr 28, 2026

Preparation of Hydroxy-PAAm Hydrogels for Decoupling the Effects of Mechanotransduction Cues
Published on: August 28, 2014
A Hydroxy-Palmitic Acid-Functionalized Mechanoresponsive Hydrogel Offers a Sustainable Solution for the Selective
Vaibhav Shivhare1, Arindam Gupta2, Shraoshee Shome2
1Department of Applied Chemistry, Rajiv Gandhi Technological University, Bhopal 462033, Madhya Pradesh, India.
Abstract:
In an effort to discover a dual-functional and eco-friendly platform to address the challenges of halide entrapment and removal of toxic metal ions from wastewater concurrently, this work delineates a novel approach of fishing out a potential weapon compound I, from a pool of three constructs, harnessing the concept of hydrophobic orchestration. We propose that the chloride-palmitic acid derivative, formed through nucleophilic substitution of the palmitic acid's alcoholic hydroxy group, plays a crucial role in driving self-assembly, which ultimately leads to hydrogel formation and halide entrapment. Furthermore, the resulting chloride-palmitic acid derivative undergoes heavy metal ion (Pb2+/Cd2+)-induced syneresis, likely due to the formation of metal-ligand complexes under the given experimental conditions, as supported by extensive experimental evidence. This dual-responsive behavior of compound I, along with its reusability for up to three cycles, represents a promising and effective strategy for environment management.
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