An Overview of Mode of Action and Analytical Methods for Evaluation of Gas Phase Activities of Flame Retardants

The latest techniques used to prove, describe and analyze the gas phase activity of a fire retardant used in polymeric materials are briefly reviewed. Classical techniques, such as thermogravimetric analysis or microscale combustion calorimetry, as well as complex and advanced analytical techniques,...

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Main Authors: Khalifah A. Salmeia, Julien Fage, Shuyu Liang, Sabyasachi Gaan
Format: Article
Language:English
Published: MDPI AG 2015-03-01
Series:Polymers
Subjects:
Online Access:http://www.mdpi.com/2073-4360/7/3/504
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spelling doaj-85c64950337642f1aae87144cba177932020-11-25T00:13:31ZengMDPI AGPolymers2073-43602015-03-017350452610.3390/polym7030504polym7030504An Overview of Mode of Action and Analytical Methods for Evaluation of Gas Phase Activities of Flame RetardantsKhalifah A. Salmeia0Julien Fage1Shuyu Liang2Sabyasachi Gaan3Additives and Chemistry, Advanced Fibers, Empa, Swiss Federal Laboratories for Materials Science and Technology, Lerchenfeldstrasse 5, St. Gallen CH-9014, SwitzerlandAdditives and Chemistry, Advanced Fibers, Empa, Swiss Federal Laboratories for Materials Science and Technology, Lerchenfeldstrasse 5, St. Gallen CH-9014, SwitzerlandAdditives and Chemistry, Advanced Fibers, Empa, Swiss Federal Laboratories for Materials Science and Technology, Lerchenfeldstrasse 5, St. Gallen CH-9014, SwitzerlandAdditives and Chemistry, Advanced Fibers, Empa, Swiss Federal Laboratories for Materials Science and Technology, Lerchenfeldstrasse 5, St. Gallen CH-9014, SwitzerlandThe latest techniques used to prove, describe and analyze the gas phase activity of a fire retardant used in polymeric materials are briefly reviewed. Classical techniques, such as thermogravimetric analysis or microscale combustion calorimetry, as well as complex and advanced analytical techniques, such as modified microscale combustion calorimeter (MCC), molecular beam mass spectroscopy and vacuum ultra violet (VUV) photoionization spectroscopy coupled with time of flight MS (TOF-MS), are described in this review. The recent advances in analytical techniques help not only in determining the gas phase activity of the flame-retardants but also identify possible reactive species responsible for gas phase flame inhibition. The complete understanding of the decomposition pathways and the flame retardant activity of a flame retardant system is essential for the development of new eco-friendly-tailored flame retardant molecules with high flame retardant efficiency.http://www.mdpi.com/2073-4360/7/3/504fire retardantgas phase activitymicroscale combustion calorimeterVUV-photoionizationhalogenatedphosphorus
collection DOAJ
language English
format Article
sources DOAJ
author Khalifah A. Salmeia
Julien Fage
Shuyu Liang
Sabyasachi Gaan
spellingShingle Khalifah A. Salmeia
Julien Fage
Shuyu Liang
Sabyasachi Gaan
An Overview of Mode of Action and Analytical Methods for Evaluation of Gas Phase Activities of Flame Retardants
Polymers
fire retardant
gas phase activity
microscale combustion calorimeter
VUV-photoionization
halogenated
phosphorus
author_facet Khalifah A. Salmeia
Julien Fage
Shuyu Liang
Sabyasachi Gaan
author_sort Khalifah A. Salmeia
title An Overview of Mode of Action and Analytical Methods for Evaluation of Gas Phase Activities of Flame Retardants
title_short An Overview of Mode of Action and Analytical Methods for Evaluation of Gas Phase Activities of Flame Retardants
title_full An Overview of Mode of Action and Analytical Methods for Evaluation of Gas Phase Activities of Flame Retardants
title_fullStr An Overview of Mode of Action and Analytical Methods for Evaluation of Gas Phase Activities of Flame Retardants
title_full_unstemmed An Overview of Mode of Action and Analytical Methods for Evaluation of Gas Phase Activities of Flame Retardants
title_sort overview of mode of action and analytical methods for evaluation of gas phase activities of flame retardants
publisher MDPI AG
series Polymers
issn 2073-4360
publishDate 2015-03-01
description The latest techniques used to prove, describe and analyze the gas phase activity of a fire retardant used in polymeric materials are briefly reviewed. Classical techniques, such as thermogravimetric analysis or microscale combustion calorimetry, as well as complex and advanced analytical techniques, such as modified microscale combustion calorimeter (MCC), molecular beam mass spectroscopy and vacuum ultra violet (VUV) photoionization spectroscopy coupled with time of flight MS (TOF-MS), are described in this review. The recent advances in analytical techniques help not only in determining the gas phase activity of the flame-retardants but also identify possible reactive species responsible for gas phase flame inhibition. The complete understanding of the decomposition pathways and the flame retardant activity of a flame retardant system is essential for the development of new eco-friendly-tailored flame retardant molecules with high flame retardant efficiency.
topic fire retardant
gas phase activity
microscale combustion calorimeter
VUV-photoionization
halogenated
phosphorus
url http://www.mdpi.com/2073-4360/7/3/504
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