Surface Functionalization of (Pyrolytic) Carbon—An Overview

Author:

Pustahija Lucija1,Kern Wolfgang1ORCID

Affiliation:

1. Chair of Chemistry of Polymeric Materials, Montanuniversität Leoben, 8700 Leoben, Austria

Abstract

This review focuses on techniques for modifying the surface of carbon that is produced from sustainable resources, such as pyrolytic carbon. Many of these materials display high specific surface area and fine particle distribution. Functionalization of a surface is a commonly used approach in designing desired surface properties of the treated material while retaining its bulk properties. Usually, oxidation is a primary step in carbon functionalization. It can be performed as wet oxidation, which is a type of chemical surface modification. Wet oxidation is usually performed using nitric acid and hydrogen peroxide, as well as using hydrothermal and solvothermal oxidation. On the other side, dry oxidation is representative of physical surface modification. This method is based on corona discharge and plasma oxidation which are promising methods that are in line with green chemistry approaches. Whilst the oxidation of the carbon surface is a well-known method, other chemical modification techniques, including cycloadditions and various radical reactions on graphene layers, are presented as an alternative approach. Regarding secondary functionalization, coupling organosilanes to activated carbon is a common technique. Organosilanes bearing reactive groups present a bridge between inorganic species and polymer systems, e.g., epoxy and polyurethane resins, and facilitate the use of carbonaceous materials as reinforcing components for polymers and thermosetting resins. Along with the presented functionalization methods, this review also provides an overview of new applications of modified (i.e., functionalized) carbon materials, e.g., for the building industry, wastewater treatment, semiconducting materials and many more.

Publisher

MDPI AG

Subject

General Medicine

Reference185 articles.

1. Andresen, J., and Lim, X.Y. (2011). Advances in Clean Hydrocarbon Fuel Processing, Elsevier.

2. Chapter 7 Pyrolysis of Hydrocarbons;Moldoveanu;Techniques and Instrumentation in Analytical Chemistry,2010

3. Donnet, J.-B. (2017). Carbon Black: Science and Technology, Routledge. [2nd ed.].

4. Modification of epoxy resins with functional silanes, polysiloxanes, silsesquioxanes, silica and silicates;Prog. Polym. Sci.,2015

5. Effects of O3 and NO2 on Catalytic Oxidation of Diesel PM;Shin;Chem. Lett.,2008

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