Two novel methods for synthesizing poly (propylene fumarate): Technical aspects and role of vacuum and N2 purging effects
Poly (propylene fumarate) (PPF), a linear unsaturated polyester consisting of alternating propylene glycol and fumaric acid units, can be cured in vivo to fill the skeletal defects with minimal surgical intervention. Many different methods have been reported for synthesizing PPF, but none of them gi...
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Iran Polymer and Petrochemical Institute
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doaj-41e5ff61bff84abc9a80d9d55d477ef22020-11-25T01:23:00ZengIran Polymer and Petrochemical InstitutePolyolefins Journal2322-22122345-68682016-01-0141274110.22063/poj.2016.13541354Two novel methods for synthesizing poly (propylene fumarate): Technical aspects and role of vacuum and N2 purging effectsSara Shahbazi0Yaser Jafari1Fathollah Moztarzadeh2Gity Mir Mohamad Sadeghi3Department of Medical engineering, Amirkabir University of Technology, Tehran, IranDepartment of Analytical Chemistry, Faculty of Chemistry, University of Kashan, Kashan, IranDepartment of Medical engineering, Amirkabir University of Technology, Tehran, IranDepartment of Polymer Engineering and Color Technology, Amirkabir University of Technology, P.O. Box: 15875-4413, Tehran, IranPoly (propylene fumarate) (PPF), a linear unsaturated polyester consisting of alternating propylene glycol and fumaric acid units, can be cured in vivo to fill the skeletal defects with minimal surgical intervention. Many different methods have been reported for synthesizing PPF, but none of them gives a clear method. The present paper introduces two new methods in PPF synthesis: Modified reflux system (MRS) and mixed reflux-distillation system (MRDS). Similarly, the effects of applying vacuum (vacuum sequence, time, vacuum applying position, and the distance between vacuum applying position and reactor) as well as nitrogen gas (used continuously or only as an N2 blanket) on the PPF synthesis have been studied. The PPF obtained using optimum reaction condition has been characterized by using NMR, FTIR, and GPC analyses. It is demonstrated that the efficiency of MRDS in synthesizing PPF is higher than that of MRS. Nitrogen gas, vacuum applying position, continuously/stepwise-continuously applying vacuum and other parameters show an important role in the polymerization of PPF in both the MRDS and MRS systems.http://poj.ippi.ac.ir/article_1354_9a295ca549a528e68226168935250336.pdfPoly (propylene fumarate)modified reflux systemmixed reflux-distillation system |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sara Shahbazi Yaser Jafari Fathollah Moztarzadeh Gity Mir Mohamad Sadeghi |
spellingShingle |
Sara Shahbazi Yaser Jafari Fathollah Moztarzadeh Gity Mir Mohamad Sadeghi Two novel methods for synthesizing poly (propylene fumarate): Technical aspects and role of vacuum and N2 purging effects Polyolefins Journal Poly (propylene fumarate) modified reflux system mixed reflux-distillation system |
author_facet |
Sara Shahbazi Yaser Jafari Fathollah Moztarzadeh Gity Mir Mohamad Sadeghi |
author_sort |
Sara Shahbazi |
title |
Two novel methods for synthesizing poly (propylene fumarate): Technical aspects and role of vacuum and N2 purging effects |
title_short |
Two novel methods for synthesizing poly (propylene fumarate): Technical aspects and role of vacuum and N2 purging effects |
title_full |
Two novel methods for synthesizing poly (propylene fumarate): Technical aspects and role of vacuum and N2 purging effects |
title_fullStr |
Two novel methods for synthesizing poly (propylene fumarate): Technical aspects and role of vacuum and N2 purging effects |
title_full_unstemmed |
Two novel methods for synthesizing poly (propylene fumarate): Technical aspects and role of vacuum and N2 purging effects |
title_sort |
two novel methods for synthesizing poly (propylene fumarate): technical aspects and role of vacuum and n2 purging effects |
publisher |
Iran Polymer and Petrochemical Institute |
series |
Polyolefins Journal |
issn |
2322-2212 2345-6868 |
publishDate |
2016-01-01 |
description |
Poly (propylene fumarate) (PPF), a linear unsaturated polyester consisting of alternating propylene glycol and fumaric acid units, can be cured in vivo to fill the skeletal defects with minimal surgical intervention. Many different methods have been reported for synthesizing PPF, but none of them gives a clear method. The present paper introduces two new methods in PPF synthesis: Modified reflux system (MRS) and mixed reflux-distillation system (MRDS). Similarly, the effects of applying vacuum (vacuum sequence, time, vacuum applying position, and the distance between vacuum applying position and reactor) as well as nitrogen gas (used continuously or only as an N2 blanket) on the PPF synthesis have been studied. The PPF obtained using optimum reaction condition has been characterized by using NMR, FTIR, and GPC analyses. It is demonstrated that the efficiency of MRDS in synthesizing PPF is higher than that of MRS. Nitrogen gas, vacuum applying position, continuously/stepwise-continuously applying vacuum and other parameters show an important role in the polymerization of PPF in both the MRDS and MRS systems. |
topic |
Poly (propylene fumarate) modified reflux system mixed reflux-distillation system |
url |
http://poj.ippi.ac.ir/article_1354_9a295ca549a528e68226168935250336.pdf |
work_keys_str_mv |
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