Catalyzed Synthesis and Characterization of a Novel Lignin-Based Curing Agent for the Curing of High-Performance Epoxy Resin

In this study, lignin, an aromatic compound from the forestry industry, was used as a renewable material to synthesize a new aromatic amine curing agent for epoxy resin. Firstly, lignin was separated from black liquor and hydroxyl groups were converted to tosyl groups as leaving groups. Then, primar...

Full description

Bibliographic Details
Main Authors: Saeid Nikafshar, Omid Zabihi, Yousef Moradi, Mojtaba Ahmadi, Saba Amiri, Minoo Naebe
Format: Article
Language:English
Published: MDPI AG 2017-07-01
Series:Polymers
Subjects:
Online Access:https://www.mdpi.com/2073-4360/9/7/266
id doaj-63437cf92a044ce5a06d9f6af02f9e7c
record_format Article
spelling doaj-63437cf92a044ce5a06d9f6af02f9e7c2020-11-24T21:18:00ZengMDPI AGPolymers2073-43602017-07-019726610.3390/polym9070266polym9070266Catalyzed Synthesis and Characterization of a Novel Lignin-Based Curing Agent for the Curing of High-Performance Epoxy ResinSaeid Nikafshar0Omid Zabihi1Yousef Moradi2Mojtaba Ahmadi3Saba Amiri4Minoo Naebe5Department of Applied Chemistry, Faculty of Chemistry, University of Tabriz, Tabriz 51666, IranInstitute for Frontier Materials, Deakin University, Geelong VIC 3216, Victoria, AustraliaDepartment of Organic Chemistry, Faculty of Chemistry, Isfahan University of Technology, Isfahan 8415683111, IranInstitute for Frontier Materials, Deakin University, Geelong VIC 3216, Victoria, AustraliaDepartment of Applied Chemistry, Faculty of Chemistry, Urmia University, Urmia 5756151818, IranInstitute for Frontier Materials, Deakin University, Geelong VIC 3216, Victoria, AustraliaIn this study, lignin, an aromatic compound from the forestry industry, was used as a renewable material to synthesize a new aromatic amine curing agent for epoxy resin. Firstly, lignin was separated from black liquor and hydroxyl groups were converted to tosyl groups as leaving groups. Then, primary amination was conducted using an ammonia solution at high pressure and temperature, in the presence of a nano-alumina-based catalyst. The structure of the nanocatalyst was confirmed by FT-IR, ICP, SEM, and XPS analyses. According to the FT-IR spectra, a demethylation reaction, the substitution of hydroxyl groups with tosyl groups, and then an amination reaction were successfully performed on lignin, which was further confirmed by the 13C NMR and CHNS analyses. The active hydrogen equivalent of aminated lignin was determined and three samples with 9.9 wt %, 12.9 wt %, and 15.9 wt % of aminated lignin, as curing agents, were prepared for curing the diglycidyl ether of bisphenol A (DGEBA). The thermal characteristics of the curing process of these epoxy samples were determined by DSC and TGA analyses. Moreover, the mechanical performance of the cured epoxy systems, e.g., the tensile strength and Izod impact strength, were measured, showing that in the presence of 12.9 wt % aminated lignin, the mechanical properties of the aminated lignin-epoxy system exhibited the best performance, which was competitive, compared to the epoxy systems cured by commercial aromatic curing agents.https://www.mdpi.com/2073-4360/9/7/266renewable epoxy resinlignincuring agentnanocatalyst
collection DOAJ
language English
format Article
sources DOAJ
author Saeid Nikafshar
Omid Zabihi
Yousef Moradi
Mojtaba Ahmadi
Saba Amiri
Minoo Naebe
spellingShingle Saeid Nikafshar
Omid Zabihi
Yousef Moradi
Mojtaba Ahmadi
Saba Amiri
Minoo Naebe
Catalyzed Synthesis and Characterization of a Novel Lignin-Based Curing Agent for the Curing of High-Performance Epoxy Resin
Polymers
renewable epoxy resin
lignin
curing agent
nanocatalyst
author_facet Saeid Nikafshar
Omid Zabihi
Yousef Moradi
Mojtaba Ahmadi
Saba Amiri
Minoo Naebe
author_sort Saeid Nikafshar
title Catalyzed Synthesis and Characterization of a Novel Lignin-Based Curing Agent for the Curing of High-Performance Epoxy Resin
title_short Catalyzed Synthesis and Characterization of a Novel Lignin-Based Curing Agent for the Curing of High-Performance Epoxy Resin
title_full Catalyzed Synthesis and Characterization of a Novel Lignin-Based Curing Agent for the Curing of High-Performance Epoxy Resin
title_fullStr Catalyzed Synthesis and Characterization of a Novel Lignin-Based Curing Agent for the Curing of High-Performance Epoxy Resin
title_full_unstemmed Catalyzed Synthesis and Characterization of a Novel Lignin-Based Curing Agent for the Curing of High-Performance Epoxy Resin
title_sort catalyzed synthesis and characterization of a novel lignin-based curing agent for the curing of high-performance epoxy resin
publisher MDPI AG
series Polymers
issn 2073-4360
publishDate 2017-07-01
description In this study, lignin, an aromatic compound from the forestry industry, was used as a renewable material to synthesize a new aromatic amine curing agent for epoxy resin. Firstly, lignin was separated from black liquor and hydroxyl groups were converted to tosyl groups as leaving groups. Then, primary amination was conducted using an ammonia solution at high pressure and temperature, in the presence of a nano-alumina-based catalyst. The structure of the nanocatalyst was confirmed by FT-IR, ICP, SEM, and XPS analyses. According to the FT-IR spectra, a demethylation reaction, the substitution of hydroxyl groups with tosyl groups, and then an amination reaction were successfully performed on lignin, which was further confirmed by the 13C NMR and CHNS analyses. The active hydrogen equivalent of aminated lignin was determined and three samples with 9.9 wt %, 12.9 wt %, and 15.9 wt % of aminated lignin, as curing agents, were prepared for curing the diglycidyl ether of bisphenol A (DGEBA). The thermal characteristics of the curing process of these epoxy samples were determined by DSC and TGA analyses. Moreover, the mechanical performance of the cured epoxy systems, e.g., the tensile strength and Izod impact strength, were measured, showing that in the presence of 12.9 wt % aminated lignin, the mechanical properties of the aminated lignin-epoxy system exhibited the best performance, which was competitive, compared to the epoxy systems cured by commercial aromatic curing agents.
topic renewable epoxy resin
lignin
curing agent
nanocatalyst
url https://www.mdpi.com/2073-4360/9/7/266
work_keys_str_mv AT saeidnikafshar catalyzedsynthesisandcharacterizationofanovelligninbasedcuringagentforthecuringofhighperformanceepoxyresin
AT omidzabihi catalyzedsynthesisandcharacterizationofanovelligninbasedcuringagentforthecuringofhighperformanceepoxyresin
AT yousefmoradi catalyzedsynthesisandcharacterizationofanovelligninbasedcuringagentforthecuringofhighperformanceepoxyresin
AT mojtabaahmadi catalyzedsynthesisandcharacterizationofanovelligninbasedcuringagentforthecuringofhighperformanceepoxyresin
AT sabaamiri catalyzedsynthesisandcharacterizationofanovelligninbasedcuringagentforthecuringofhighperformanceepoxyresin
AT minoonaebe catalyzedsynthesisandcharacterizationofanovelligninbasedcuringagentforthecuringofhighperformanceepoxyresin
_version_ 1726010848680345600