Polydopamine‐Enabled Biomimetic Surface Engineering of Materials: New Insights and Promising Applications

Author:

Saraf Mohit12,Prateek 1,Ranjan Rahul13,Balasubramaniam Bhuvaneshwari14,Thakur Vijay Kumar56ORCID,Gupta Raju Kumar1789

Affiliation:

1. Department of Chemical Engineering Indian Institute of Technology Kanpur Kanpur Uttar Pradesh 208016 India

2. A. J. Drexel Nanomaterials Institute and Department of Materials Science and Engineering Drexel University Philadelphia Pennsylvania 19104 USA

3. Department of Chemical Engineering Indian Institute of Technology Kharagpur Kharagpur West Bengal 721302 India

4. Department of Chemistry Indian Institute of Technology (BHU) Varanasi Varanasi Uttar Pradesh 221005 India

5. Biorefining and Advanced Materials Research Center SRUC Edinburgh EH9 3JG UK

6. School of Engineering University of Petroleum & Energy Studies (UPES) Dehradun Uttarakhand 248007 India

7. Department of Sustainable Energy Engineering Indian Institute of Technology Kanpur Kanpur Uttar Pradesh 208016 India

8. Center for Environmental Science and Engineering Indian Institute of Technology Kanpur Kanpur Uttar Pradesh 208016 India

9. Chandrakanta Kesavan Centre for Energy Policy and Climate Solutions Indian Institute of Technology Kanpur Kanpur Uttar Pradesh 208016 India

Abstract

AbstractSurface modification is an important approach to modify the properties of materials. Numerous approaches have been adopted to tailor the properties of such materials, which have been proven successful at many scales and parameters. However, most of these techniques are often tedious, poorly adhesive, costly, sometimes hazardous, and surface‐specific, hence cannot be extended on a large scale and all kinds of surfaces. These shortcomings have led to the emergence of new dopamine (DA) based green surface modification technique where a thin polydopamine (PDA) layer is deposited on surfaces through a facile polymerization of DA under alkaline conditions to enable the surface for various applications. This surface modification strategy has several advantages over other techniques in deposition processing under mild conditions, cost‐effective and straightforward ingredients, and applicability to all kinds of surfaces regardless of their sizes, shapes, and types. Moreover, the PDA layer enhances the surface functionality. Therefore, it can serve as a versatile platform for various secondary reactions for a wide range of applications. Herein, the chemistry of DA is summarized and its polymerized form PDA for the modification of different families of materials’ surfaces with an emphasis on energy, environmental and biological applications.

Funder

Department of Science and Technology, Government of Kerala

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials

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