Cargando…

A new safranin based three-component photoinitiating system for high resolution and low shrinkage printed parts via digital light processing

Additive manufacturing or 3D printing has attracted the interest of researchers in industry and academia because of its outstanding features. In this study, a new three-component photoinitiating system (PIS) consisting of safranin O (SFH(+)), thiol derivatives and diphenyl iodonium salt was used for...

Descripción completa

Detalles Bibliográficos
Autores principales: Nejadebrahim, Atefeh, Ebrahimi, Morteza, Allonas, Xavier, Croutxé-Barghorn, Céline, Ley, Christian, Métral, Boris
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9076221/
https://www.ncbi.nlm.nih.gov/pubmed/35541386
http://dx.doi.org/10.1039/c9ra09170j
_version_ 1784701873049042944
author Nejadebrahim, Atefeh
Ebrahimi, Morteza
Allonas, Xavier
Croutxé-Barghorn, Céline
Ley, Christian
Métral, Boris
author_facet Nejadebrahim, Atefeh
Ebrahimi, Morteza
Allonas, Xavier
Croutxé-Barghorn, Céline
Ley, Christian
Métral, Boris
author_sort Nejadebrahim, Atefeh
collection PubMed
description Additive manufacturing or 3D printing has attracted the interest of researchers in industry and academia because of its outstanding features. In this study, a new three-component photoinitiating system (PIS) consisting of safranin O (SFH(+)), thiol derivatives and diphenyl iodonium salt was used for the free radical photopolymerization of a diacrylate monomer (SR349) in DLP 3D printing. The photoinitiating characteristics of this PIS were evaluated and advantageously compared to those of a conventional PI (TPO) by using RT-FTIR. It is shown that the proposed PIS could be used as an efficient PIS for free radical photopolymerization. In addition, the resolution and shrinkage of printed parts in the presence of this three-component PIS were measured and compared to those printed using TPO as a photoinitiator. The resolution of printed parts was determined by using SEM and profilometry techniques. In addition, photorheometry was used to evaluate the linear shrinkage of samples. Moreover, the initiating mechanism of the three-component PIS was studied by using laser flash photolysis (LFP). A photocyclic mechanism was outlined for the three-component PIS which demonstrated this mechanism would be very beneficial for DLP 3D printing.
format Online
Article
Text
id pubmed-9076221
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90762212022-05-09 A new safranin based three-component photoinitiating system for high resolution and low shrinkage printed parts via digital light processing Nejadebrahim, Atefeh Ebrahimi, Morteza Allonas, Xavier Croutxé-Barghorn, Céline Ley, Christian Métral, Boris RSC Adv Chemistry Additive manufacturing or 3D printing has attracted the interest of researchers in industry and academia because of its outstanding features. In this study, a new three-component photoinitiating system (PIS) consisting of safranin O (SFH(+)), thiol derivatives and diphenyl iodonium salt was used for the free radical photopolymerization of a diacrylate monomer (SR349) in DLP 3D printing. The photoinitiating characteristics of this PIS were evaluated and advantageously compared to those of a conventional PI (TPO) by using RT-FTIR. It is shown that the proposed PIS could be used as an efficient PIS for free radical photopolymerization. In addition, the resolution and shrinkage of printed parts in the presence of this three-component PIS were measured and compared to those printed using TPO as a photoinitiator. The resolution of printed parts was determined by using SEM and profilometry techniques. In addition, photorheometry was used to evaluate the linear shrinkage of samples. Moreover, the initiating mechanism of the three-component PIS was studied by using laser flash photolysis (LFP). A photocyclic mechanism was outlined for the three-component PIS which demonstrated this mechanism would be very beneficial for DLP 3D printing. The Royal Society of Chemistry 2019-12-09 /pmc/articles/PMC9076221/ /pubmed/35541386 http://dx.doi.org/10.1039/c9ra09170j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Nejadebrahim, Atefeh
Ebrahimi, Morteza
Allonas, Xavier
Croutxé-Barghorn, Céline
Ley, Christian
Métral, Boris
A new safranin based three-component photoinitiating system for high resolution and low shrinkage printed parts via digital light processing
title A new safranin based three-component photoinitiating system for high resolution and low shrinkage printed parts via digital light processing
title_full A new safranin based three-component photoinitiating system for high resolution and low shrinkage printed parts via digital light processing
title_fullStr A new safranin based three-component photoinitiating system for high resolution and low shrinkage printed parts via digital light processing
title_full_unstemmed A new safranin based three-component photoinitiating system for high resolution and low shrinkage printed parts via digital light processing
title_short A new safranin based three-component photoinitiating system for high resolution and low shrinkage printed parts via digital light processing
title_sort new safranin based three-component photoinitiating system for high resolution and low shrinkage printed parts via digital light processing
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9076221/
https://www.ncbi.nlm.nih.gov/pubmed/35541386
http://dx.doi.org/10.1039/c9ra09170j
work_keys_str_mv AT nejadebrahimatefeh anewsafraninbasedthreecomponentphotoinitiatingsystemforhighresolutionandlowshrinkageprintedpartsviadigitallightprocessing
AT ebrahimimorteza anewsafraninbasedthreecomponentphotoinitiatingsystemforhighresolutionandlowshrinkageprintedpartsviadigitallightprocessing
AT allonasxavier anewsafraninbasedthreecomponentphotoinitiatingsystemforhighresolutionandlowshrinkageprintedpartsviadigitallightprocessing
AT croutxebarghornceline anewsafraninbasedthreecomponentphotoinitiatingsystemforhighresolutionandlowshrinkageprintedpartsviadigitallightprocessing
AT leychristian anewsafraninbasedthreecomponentphotoinitiatingsystemforhighresolutionandlowshrinkageprintedpartsviadigitallightprocessing
AT metralboris anewsafraninbasedthreecomponentphotoinitiatingsystemforhighresolutionandlowshrinkageprintedpartsviadigitallightprocessing
AT nejadebrahimatefeh newsafraninbasedthreecomponentphotoinitiatingsystemforhighresolutionandlowshrinkageprintedpartsviadigitallightprocessing
AT ebrahimimorteza newsafraninbasedthreecomponentphotoinitiatingsystemforhighresolutionandlowshrinkageprintedpartsviadigitallightprocessing
AT allonasxavier newsafraninbasedthreecomponentphotoinitiatingsystemforhighresolutionandlowshrinkageprintedpartsviadigitallightprocessing
AT croutxebarghornceline newsafraninbasedthreecomponentphotoinitiatingsystemforhighresolutionandlowshrinkageprintedpartsviadigitallightprocessing
AT leychristian newsafraninbasedthreecomponentphotoinitiatingsystemforhighresolutionandlowshrinkageprintedpartsviadigitallightprocessing
AT metralboris newsafraninbasedthreecomponentphotoinitiatingsystemforhighresolutionandlowshrinkageprintedpartsviadigitallightprocessing