Functionalization of polymers and nanomaterials for water treatment, food packaging, textile and biomedical applications: a review

Функционализация полимеров и наноматериалов для очистки воды, упаковки пищевых продуктов, текстиля и биомедицинских применений: обзор
Mika Sillanpää, Milad Ashrafizadeh, Ali Zarrabi, Ehsan Nazarzadeh Zare‬, Pooyan Makvandi, Atefeh Zarepour, Tarun Agarwal, Tapas K. Maiti, Reza Mohammadinejad, Vinod V.T. Padil, Filippo Rossi, Giuseppe Perale, Sidra Iftekhar, Fabio Pizzetti
2020-09-16

adhesionbiocompatibilitybiomedical/medical applicationscell–polymer interactionsfood packaging applicationsgrafting functional groupsindustrial-scale manufacturingnanomaterial functionalizationnanosafetypolymer functionalizationprintabilitysurface decorationsurface modificationtextile industry applicationswater treatment applicationswetting
Abstract The inert nature of most commercial polymers and nanomaterials results in limitations of applications in various industrial fields. This can be solved by surface modifications to improve physicochemical and biological properties, such as adhesion, printability, wetting and biocompatibility. Polymer functionalization allows to graft specific moieties and conjugate molecules that improve material performances. In the last decades, several approaches have been designed in the industry and academia to graft functional groups on surfaces. Here, we review surface decoration of polymers and nanomaterials, with focus on major industrial applications in the medical field, textile industry, water treatment and food packaging. We discuss the advantages and challenges of polymer functionalization. More knowledge is needed on the biology behind cell–polymer interactions, nanosafety and manufacturing at the industrial scale.
1
Important challenges remain, including limited understanding of cell–polymer interactions, nanosafety concerns, and scalable industrial manufacturing.
2
Numerous approaches for grafting functional groups on surfaces have been developed in academia and industry over recent decades.
3
Polymer functionalization enables grafting of specific moieties and conjugation of molecules that enhance adhesion, printability, wetting and biocompatibility.
4
Surface decoration strategies are applicable across key industries: medical, textile, water treatment and food packaging.
5
Surface modification of commercial polymers and nanomaterials overcomes inertness and expands industrial application potential by improving physicochemical and biological properties.

Polymers and nanomaterials subject to surface functionalization

Surface functionalization (surface decoration) to modify physicochemical and biological properties—e.g., adhesion, printability, wetting, biocompatibility—for applications in water treatment, food packaging, textiles, and biomedical fields

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2020-09-16
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Mika Sillanpää
Milad Ashrafizadeh
Ali Zarrabi
Ehsan Nazarzadeh Zare‬
Pooyan Makvandi
Atefeh Zarepour
Tarun Agarwal
Tapas K. Maiti
Reza Mohammadinejad
Vinod V.T. Padil
Filippo Rossi
Giuseppe Perale
Sidra Iftekhar
Fabio Pizzetti
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