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调控和预测纳米工程材料表面的润湿性。

Tuning and predicting the wetting of nanoengineered material surface.

机构信息

Future Industries Institute, University of South Australia, Mawson Lakes, SA 5095, Australia.

Australian Wine Research Institute, Waite Precinct, Hartley Grove Corner Paratoo Road, Urrbrae, SA 5064, Australia.

出版信息

Nanoscale. 2016 Feb 28;8(8):4635-42. doi: 10.1039/c5nr08329j.

Abstract

The wetting of a material can be tuned by changing the roughness on its surface. Recent advances in the field of nanotechnology open exciting opportunities to control macroscopic wetting behaviour. Yet, the benchmark theories used to describe the wettability of macroscopically rough surfaces fail to fully describe the wetting behaviour of systems with topographical features at the nanoscale. To shed light on the events occurring at the nanoscale we have utilised model gradient substrata where surface nanotopography was tailored in a controlled and robust manner. The intrinsic wettability of the coatings was varied from hydrophilic to hydrophobic. The measured water contact angle could not be described by the classical theories. We developed an empirical model that effectively captures the experimental data, and further enables us to predict the wetting of surfaces with nanoscale roughness by considering the physical and chemical properties of the material. The fundamental insights presented here are important for the rational design of advanced materials having tailored surface nanotopography with predictable wettability.

摘要

通过改变材料表面的粗糙度,可以调整其润湿性。纳米技术领域的最新进展为控制宏观润湿性行为开辟了令人兴奋的机会。然而,用于描述宏观粗糙表面润湿性的基准理论未能完全描述具有纳米尺度形貌特征的系统的润湿行为。为了深入了解纳米尺度上发生的情况,我们利用了模型梯度衬底,以可控和稳健的方式对表面纳米形貌进行了定制。涂层的固有润湿性从亲水变为疏水。所测量的水接触角不能用经典理论来描述。我们开发了一个经验模型,可以有效地捕捉实验数据,并进一步使我们能够通过考虑材料的物理和化学性质来预测具有纳米粗糙度的表面的润湿。这里提出的基本见解对于具有可预测润湿性的定制表面纳米形貌的先进材料的合理设计非常重要。

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