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叶酸的稳健自修复金属超凝胶:用于油田应用的潜在可持续凝胶剂。

Robust Self-Healing Metallo-Supergels of Folic Acid: Potential Sustainable Gelator for Oilfield Applications.

作者信息

Marzabad Mahya Asgharian, Chattopadhyay Subhasis, Hietala Sami, Nonappa Nonappa, Marek Radek, Jurček Ondřej

机构信息

Department of Chemistry, Faculty of Science, Masaryk University, Brno, Czechia.

Department of Natural Drugs, Faculty of Pharmacy, Masaryk University, Brno, Czechia.

出版信息

Chemistry. 2025 May;31(25):e202500748. doi: 10.1002/chem.202500748. Epub 2025 Apr 9.

Abstract

The majority of known metallosupramolecular gels are based on carefully designed ligands using extensive chemical synthesis. Their gelation is often limited to a certain specific metal salt. We demonstrate that in the presence of a wide group of metal salts natural and readily available folic acid (FA) can act as a supergelator. We report a systematic investigation of 17 mechanically robust FA-based metallogels at extremely low concentrations (<0.2 wt%). Using oscillatory rheological measurements, we further show that these metallogels undergo rapid recovery and self-healing, recovering up to 95% of their original stiffness within 1 min. Among the metallogels studied, FA-chromium(III) acetate gel (0.4 wt%) displayed the highest stiffness with a storage modulus of 4 kPa. More importantly, the stiffness, recovery, and sol ↔ gel transitions can be readily tuned by changing either the metal salt or the concentration. Using a combination of various analytical methods, we also suggest a structure of self-assembly in the metallogel network. This study defines non-toxic FA as a robust and sustainable building block for metallogels-mechanically tunable, multi-responsive soft materials. Finally, as a proof-of-concept experiment, we demonstrate that the FA-chromium(III) acetate gel can be considered as a potent sustainable gellator for enhanced oil recovery applications.

摘要

大多数已知的金属超分子凝胶是基于精心设计的配体,采用广泛的化学合成方法制备而成。它们的凝胶化通常局限于某一种特定的金属盐。我们证明,在多种金属盐存在的情况下,天然且易于获取的叶酸(FA)可以作为一种超级凝胶剂。我们报告了对17种极低浓度(<0.2 wt%)的基于FA的机械坚固的金属凝胶进行的系统研究。通过振荡流变学测量,我们进一步表明这些金属凝胶具有快速恢复和自我修复能力,在1分钟内可恢复其原始刚度的95%。在所研究的金属凝胶中,FA - 醋酸铬(III)凝胶(0.4 wt%)表现出最高的刚度,储能模量为4 kPa。更重要的是,通过改变金属盐或浓度,可以很容易地调节刚度、恢复能力以及溶胶 - 凝胶转变。通过结合各种分析方法,我们还提出了金属凝胶网络中的自组装结构。这项研究将无毒的FA定义为金属凝胶(机械可调、多响应的软材料)的一种坚固且可持续的构建单元。最后,作为概念验证实验,我们证明FA - 醋酸铬(III)凝胶可被视为一种用于提高原油采收率应用的高效可持续凝胶剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5398/12057599/d4455b03b1c0/CHEM-31-e202500748-g012.jpg

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