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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Mussel-Inspired Polyglycerol Coatings with Controlled Wettability: From Superhydrophilic to Superhydrophobic Surface Coatings
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Mussel-Inspired Polyglycerol Coatings with Controlled Wettability: From Superhydrophilic to Superhydrophobic Surface Coatings

机译:贻贝启发的聚甘油涂料,具有受控润湿性:从超级水中到超疏水表面涂层

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摘要

Facile approaches to substrate-independent surface coatings with special wettability properties, such as superhydrophobicity, superhydrophilicity, and superamphiphobicity, have been limited. To address this problem, we combined two separate biomimetic concepts of mussel-inspired adhesion and highly hierarchical lotuslike surface structures to develop a universal fabrication method for various superwetting systems on any kind of material. In this feature article, we summarize our work on mussel-inspired polyglycerol (MI-dPG) and its application in the area of superwetting interfacial materials. MI-dPG mimics not only the functional groups of mfp-S but also their molecular weight and molecular structure, which results in strong and rapid' adhesion to the substrate. Furthermore, the MI-dPG coating process provides precise roughness control. The construction of highly hierarchical and superhydrophilic structures was achieved either directly by pH-controlled aggregation or in combination with nanoparticles. Subsequent postrnodification of these highly hierarchical structures with different fluorinated or nonfluorinated hydrophobic superhydrophobic and even superamphiphobic properties.
机译:有限的衬底独立表面涂层的容纳接近具有特殊润湿性的表面涂层,例如超疏水性,过性和超人物,已经受到限制。为了解决这个问题,我们组合了贻贝激发粘附和高度等级莲化的表面结构的两个独立的仿生概念,以开发用于任何类型的材料的各种超雨系统的通用制造方法。在这篇功能文章中,我们总结了我们对贻贝启发的聚甘油(MI-DPG)的工作及其在超雨衣界面材料领域的应用。 MI-DPG不仅模拟了MFP-S的官能团,而且模拟其分子量和分子结构,这导致对基材的强烈且快速的粘附性。此外,MI-DPG涂布过程提供精确的粗糙度控制。通过pH控制的聚集或与纳米颗粒组合直接实现高度等级和超硫基结构的结构。随后具有不同氟化或非氟化疏水​​性超疏水性和甚至超人参特性的这些高度分层结构的探讨。

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