The correlation between structure and β-nucleation efficiency of Ba, Sr, Ca and Mg pimelates in isotactic polypropylene
The pimelates of the earth-alkaline elements and pimelic acid have been synthesized and studied. All prepared pimelates are crystallohydrates and Ba and Sr pimelates are isotypic. The obtained compounds have been characterized using infrared spectroscopy and X-ray diffraction, and it was found that,...
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Society of Chemists and Technologists of Macedonia
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doaj-c9a16e3312d34bbc86611f2e6cfe05302021-02-25T08:35:53ZengSociety of Chemists and Technologists of MacedoniaMacedonian Journal of Chemistry and Chemical Engineering1857-55521857-56252015-05-0134118919910.20450/mjcce.2015.635251The correlation between structure and β-nucleation efficiency of Ba, Sr, Ca and Mg pimelates in isotactic polypropyleneAco Janevski0Gordana Bogoeva-Gaceva1Viktor Stefov2Metodija Najdoski3Faculty of Technology, University Goce Delčev, Krste Misirkov bb, 2000 ŠtipFaculty of Technology and Metallurgy, Ss. Cyril and Methodius University, Ruger Boskovic 16, 1000 SkopjeInstitute of Chemistry, Faculty of Natural Sciences and Mathematics, Ss. Cyril and Methodius University, P.O. Box 162, 1001 SkopjeInstitute of Chemistry, Faculty of Natural Sciences and Mathematics, Ss. Cyril and Methodius University, P.O. Box 162, 1001 SkopjeThe pimelates of the earth-alkaline elements and pimelic acid have been synthesized and studied. All prepared pimelates are crystallohydrates and Ba and Sr pimelates are isotypic. The obtained compounds have been characterized using infrared spectroscopy and X-ray diffraction, and it was found that, near and above the melting temperature of polypropylene, the pimelates of Ba and Sr are crystalline, whereas the ones of Ca and Mg are amorphous. The nucleation activity of these pimelates has been studied in the process of crystallization of polypropylene in non-isothermal conditions and followed by differential scanning calorimetry (at cooling rate Vc = 1–20 K min–1). It was found that their nucleation activity, even at concentration of 0.1 %, differs considerably with regards to the cooling rate, and they induce different polymorphic composition of the polymer. The nucleation activity was mostly exhibited by Ca pimelate, and when it was used the content of the β crystalline phase (Uβ) in polypropylene ranged from 0.90 to 0.94, depending on the cooling rate, compared to 0.18–0.35 when Mg pimelate was used. In the polymer crystallized by using Ba and Sr pimelate as nucleators, Uβ ranged from 0.47 to 0.77. Based on the theoretical concepts for nucleation activity of solid substrates, an attempt was made to correlate the structurаl features of the synthesized pimelates with their β-nucleation activity in the process of nonisothermal crystallization of iPP.https://mjcce.org.mk/index.php/MJCCE/article/view/635polypropylene, polymorphism, beta-nucleators, pimelates |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Aco Janevski Gordana Bogoeva-Gaceva Viktor Stefov Metodija Najdoski |
spellingShingle |
Aco Janevski Gordana Bogoeva-Gaceva Viktor Stefov Metodija Najdoski The correlation between structure and β-nucleation efficiency of Ba, Sr, Ca and Mg pimelates in isotactic polypropylene Macedonian Journal of Chemistry and Chemical Engineering polypropylene, polymorphism, beta-nucleators, pimelates |
author_facet |
Aco Janevski Gordana Bogoeva-Gaceva Viktor Stefov Metodija Najdoski |
author_sort |
Aco Janevski |
title |
The correlation between structure and β-nucleation efficiency of Ba, Sr, Ca and Mg pimelates in isotactic polypropylene |
title_short |
The correlation between structure and β-nucleation efficiency of Ba, Sr, Ca and Mg pimelates in isotactic polypropylene |
title_full |
The correlation between structure and β-nucleation efficiency of Ba, Sr, Ca and Mg pimelates in isotactic polypropylene |
title_fullStr |
The correlation between structure and β-nucleation efficiency of Ba, Sr, Ca and Mg pimelates in isotactic polypropylene |
title_full_unstemmed |
The correlation between structure and β-nucleation efficiency of Ba, Sr, Ca and Mg pimelates in isotactic polypropylene |
title_sort |
correlation between structure and β-nucleation efficiency of ba, sr, ca and mg pimelates in isotactic polypropylene |
publisher |
Society of Chemists and Technologists of Macedonia |
series |
Macedonian Journal of Chemistry and Chemical Engineering |
issn |
1857-5552 1857-5625 |
publishDate |
2015-05-01 |
description |
The pimelates of the earth-alkaline elements and pimelic acid have been synthesized and studied. All prepared pimelates are crystallohydrates and Ba and Sr pimelates are isotypic. The obtained compounds have been characterized using infrared spectroscopy and X-ray diffraction, and it was found that, near and above the melting temperature of polypropylene, the pimelates of Ba and Sr are crystalline, whereas the ones of Ca and Mg are amorphous. The nucleation activity of these pimelates has been studied in the process of crystallization of polypropylene in non-isothermal conditions and followed by differential scanning calorimetry (at cooling rate Vc = 1–20 K min–1). It was found that their nucleation activity, even at concentration of 0.1 %, differs considerably with regards to the cooling rate, and they induce different polymorphic composition of the polymer. The nucleation activity was mostly exhibited by Ca pimelate, and when it was used the content of the β crystalline phase (Uβ) in polypropylene ranged from 0.90 to 0.94, depending on the cooling rate, compared to 0.18–0.35 when Mg pimelate was used. In the polymer crystallized by using Ba and Sr pimelate as nucleators, Uβ ranged from 0.47 to 0.77. Based on the theoretical concepts for nucleation activity of solid substrates, an attempt was made to correlate the structurаl features of the synthesized pimelates with their β-nucleation activity in the process of nonisothermal crystallization of iPP. |
topic |
polypropylene, polymorphism, beta-nucleators, pimelates |
url |
https://mjcce.org.mk/index.php/MJCCE/article/view/635 |
work_keys_str_mv |
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