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    Effect of functional groups on the thermal degradation of phosphorus- and phosphorus/nitrogen-containing functional polymers.
        
        J. Therm. Anal. Calorim. 130, 799–812 (2017)
    
    
    
				In the present study the thermal behavior of phosphorus- and phosphorus/nitrogen-containing functional polymers was studied. The polymers were synthesized via oxidative chlorophosphorylation reaction of butadiene rubber and were subsequently subjected to hydrolysis, aminolysis and/or alcoholysis in order to introduce appropriate functionalities. The successful modifications of the polymer and presences of the respective functional groups were determined using Fourier transform infrared spectroscopy. It was found that the product of hydrolysis of the modified butadiene rubber contains acidic groups in its structure while the products of aminolysis and alcoholysis contain both acidic and amine and/or alcohol-derived moieties. The kinetic analyses of the thermal decomposition reaction were evaluated using thermogravimetric analysis and subsequently Friedman and Ozawa–Flynn–Wall methods revealing three-stage degradation process. Calorimetric measurements were performed for the studied polymers, and mass spectrometric analyses were used to identify the decomposition products for phosphorus-containing polymer. The overall results allowed to reveal the influence of the attached phosphorus- and phosphorus/nitrogen-containing functional groups to the thermal degradation of the cross-linked polymers.
			
			
		Impact Factor
					Scopus SNIP
					Web of Science
Times Cited
					Times Cited
Scopus
Cited By
					
					Cited By
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				1.953
					0.965
					9
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        Publikationstyp
        Artikel: Journalartikel
    
 
    
        Dokumenttyp
        Wissenschaftlicher Artikel
    
 
     
    
    
        Schlagwörter
        Butadiene Rubber ; Functional Groups ; Kinetic Parameters Of Degradation ; Thermal Behavior; Solid-phase Extraction; Ion-exchange-resins; Thermogravimetric Data; Acrylic Copolymers; Decomposition; Kinetics; Sorption; Sorbent; Pyrolysis; Lead(ii)
    
 
     
    
    
        Sprache
        englisch
    
 
    
        Veröffentlichungsjahr
        2017
    
 
     
    
        HGF-Berichtsjahr
        2017
    
 
    
    
        ISSN (print) / ISBN
        1388-6150
    
 
    
        e-ISSN
        1588-2926
    
 
     
     
     
	     
	 
	 
    
        Zeitschrift
        Journal of Thermal Analysis and Calorimetry
    
 
		
    
        Quellenangaben
        
	    Band: 130,  
	    Heft: 2,  
	    Seiten: 799–812 
	    
	    
	
    
 
  
         
        
            Verlag
            Springer
        
 
        
            Verlagsort
            Dordrecht
        
 
	
         
         
         
         
         
	
         
         
         
    
         
         
         
         
         
         
         
    
        Begutachtungsstatus
        Peer reviewed
    
 
     
    
        POF Topic(s)
        30202 - Environmental Health
    
 
    
        Forschungsfeld(er)
        Environmental Sciences
    
 
    
        PSP-Element(e)
        G-504500-001
    
 
     
     	
    
    
        WOS ID
        WOS:000413264100020
    
    
        Scopus ID
        85020112177
    
    
        Erfassungsdatum
        2017-07-19