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制备具有凹角拓扑结构的低成本、坚固的超疏水涂层,用于自清洁、防腐蚀和油水分离。

Fabricating low-cost, robust superhydrophobic coatings with re-entrant topology for self-cleaning, corrosion inhibition, and oil-water separation.

作者信息

Sow Pradeep Kumar, Singhal Richa, Sahoo Priyanka, Radhakanth Shriram

机构信息

Department of Chemical Engineering, BITS Pilani, K. K. Birla Goa Campus, Zuarinagar, Goa 403726, India.

Department of Chemical Engineering, BITS Pilani, K. K. Birla Goa Campus, Zuarinagar, Goa 403726, India.

出版信息

J Colloid Interface Sci. 2021 Oct 15;600:358-372. doi: 10.1016/j.jcis.2021.05.026. Epub 2021 May 8.

Abstract

HYPOTHESIS

The superhydrophobic surfaces with re-entrant microstructures are known to provide robust superhydrophobicity by enhancing the energy barrier for Cassie-Baxter to Wenzel transition. However, the fabrication of such structured surfaces often involves sophisticated techniques and expensive ingredients.

EXPERIMENTS

Herein, a multifunctional, low-cost, and fluorine-free superhydrophobic coating with re-entrant surface topology was fabricated using fly ash (FA) and room-temperature-vulcanizing silicone. A systematic study was performed to evaluate the coating properties and durability. The robustness was evaluated as a function of particle size and inter-particle spacing. The performance in self-cleaning, corrosion inhibition and oil-water separation has been presented.

FINDINGS

The synthesized coatings are substrate-versatile and demonstrate superhydrophobic behavior. The close-packed coating of re-entrant FA particles attained via vibration compaction was seen to provide high robustness. The coatings retain their superhydrophobicity after multiple cycles of tape-peeling and exposure to environmental factors including temperature, pH, and UV radiation. These coatings exhibit excellent corrosion inhibition (corrosion efficiency > 99.999%), outperforming the majority of the previously reported superhydrophobic coatings. It also displays excellent self-cleaning property and high separation efficiencies in oil-water separation (>99%). We envision that such FA-based superhydrophobic coatings can solve the issues of synthesizing cheaper, sustainable, and robust superhydrophobic surfaces while simultaneously opening new avenues for FA utilization.

摘要

假设

具有凹入微结构的超疏水表面通过增强从 Cassie-Baxter 状态到 Wenzel 状态转变的能量势垒来提供强大的超疏水性。然而,这种结构化表面的制造通常涉及复杂的技术和昂贵的成分。

实验

在此,使用粉煤灰(FA)和室温硫化硅酮制备了一种具有凹入表面拓扑结构的多功能、低成本且无氟的超疏水涂层。进行了系统研究以评估涂层性能和耐久性。将耐久性评估为粒径和颗粒间间距的函数。展示了其在自清洁、缓蚀和油水分离方面的性能。

发现

合成的涂层具有广泛的基材适用性,并表现出超疏水行为。通过振动压实获得的紧密堆积的凹入 FA 颗粒涂层具有很高的耐久性。在多次胶带剥离以及暴露于包括温度、pH 值和紫外线辐射在内的环境因素后,涂层仍保持其超疏水性。这些涂层表现出优异的缓蚀性能(缓蚀效率>99.999%),优于大多数先前报道的超疏水涂层。它还具有出色的自清洁性能以及在油水分离中具有高分离效率(>99%)。我们设想,这种基于 FA 的超疏水涂层可以解决合成更便宜、可持续且耐用的超疏水表面的问题,同时为 FA 的利用开辟新途径。

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