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Tuning and predicting the wetting of nanoengineered material surface

机译:调优和预测的润湿;该材料表面

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摘要

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.
机译:可以通过改变调整材料的润湿其表面的粗糙度。纳米技术领域开放激动人心控制宏观润湿的机会的行为。描述宏观上的润湿性粗糙表面不能完全描述润湿与地貌系统的行为在纳米尺度上。发生在纳米尺度上利用模型梯度表面nanotopography根基在控制和健壮的方式定制。涂料的固有润湿性不同亲水疏水。水接触角无法计量所描述的经典理论。实证模型,有效地抓住了实验数据,进一步支持我们与纳米尺度预测表面的润湿通过考虑物理和粗糙度化学性质的材料。这里给出基本的见解是很重要的设计合理的先进材料在定制的表面nanotopography可预测的润湿性。

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