Recent innovations in surface topography

IF 2.7 4区 材料科学 Q3 CHEMISTRY, PHYSICAL
Lily Chambers, P. Roach, N. Shirtcliffe
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引用次数: 3

Abstract

In this review we provide a general review of current research themes where complex surface topography plays a role. Recent innovations and research possibilities have opened up using modern micro topography creation techniques. We are considering a large range of themes in limited depth in order to provide an introduction and to illustrate how broad the field is and to those already working in the area to help gain a broad perspective. Due to the breadth of scope this review will not go into much depth into any given area. This review aims to provide a comprehensive understanding and practical guidance on the modern use of micro and nano-topography to control water, adhesion, wettability, control of biological adhesion including implants, cell culture and biofouling and directional fluid transport. The broad range of functionality is highlighted in the many interfacial interactions, however, the manufacturing scale to allow these surfaces to be commonly used is still in development. In order to make it more accessible we have chosen to concentrate on open access articles to cite.
表面形貌的最新创新
在这篇综述中,我们提供了当前的研究主题,其中复杂的表面形貌起作用的一般审查。最近的创新和研究的可能性已经打开了使用现代微地形创造技术。我们在有限的深度内考虑了大范围的主题,以便提供一个介绍,说明该领域有多广泛,并为那些已经在该领域工作的人提供一个广泛的视角。由于范围的广泛性,本综述不会深入到任何给定的领域。本文综述了微纳米形貌在水、黏附、润湿性、生物黏附控制(包括植入物)、细胞培养、生物污垢和定向流体输送等方面的现代应用,旨在提供全面的理解和实践指导。在许多界面交互中突出了广泛的功能范围,然而,允许这些表面被普遍使用的制造规模仍在开发中。为了使它更容易获得,我们选择集中在开放获取文章来引用。
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来源期刊
Surface Innovations
Surface Innovations CHEMISTRY, PHYSICALMATERIALS SCIENCE, COAT-MATERIALS SCIENCE, COATINGS & FILMS
CiteScore
5.80
自引率
22.90%
发文量
66
期刊介绍: The material innovations on surfaces, combined with understanding and manipulation of physics and chemistry of functional surfaces and coatings, have exploded in the past decade at an incredibly rapid pace. Superhydrophobicity, superhydrophlicity, self-cleaning, self-healing, anti-fouling, anti-bacterial, etc., have become important fundamental topics of surface science research community driven by curiosity of physics, chemistry, and biology of interaction phenomenon at surfaces and their enormous potential in practical applications. Materials having controlled-functionality surfaces and coatings are important to the manufacturing of new products for environmental control, liquid manipulation, nanotechnological advances, biomedical engineering, pharmacy, biotechnology, and many others, and are part of the most promising technological innovations of the twenty-first century.
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