Flame Retardancy of Polymers: The Role of Specific Reactions in the Condensed Phase

2015 ◽  
Vol 301 (1) ◽  
pp. 9-35 ◽  
Author(s):  
Bernhard Schartel ◽  
Birgit Perret ◽  
Bettina Dittrich ◽  
Michael Ciesielski ◽  
Johannes Krämer ◽  
...  
2006 ◽  
Vol 91 (3) ◽  
pp. 593-599 ◽  
Author(s):  
Andrea Szép ◽  
András Szabó ◽  
Nikoletta Tóth ◽  
Péter Anna ◽  
György Marosi

Author(s):  
Quanyi Liu ◽  
Yinlong Zhao ◽  
Shansong Gao ◽  
Xiong Yang ◽  
Rong Fan ◽  
...  

IUCrJ ◽  
2018 ◽  
Vol 5 (2) ◽  
pp. 130-140 ◽  
Author(s):  
Margarita Dimova ◽  
Yancho D. Devedjiev

Until recently, the occurrence of conformational entropy in protein crystal contacts was considered to be a very unlikely event. A study based on the most accurately refined protein structures demonstrated that side-chain conformational entropy and static disorder might be common in protein crystal lattices. The present investigation uses structures refined using ensemble refinement to show that although paradoxical, conformational entropy is likely to be the major factor in the emergence and integrity of the protein condensed phase. This study reveals that the role of shape entropy and local entropic forces expands beyond the onset of crystallization. For the first time, the complete pattern of intermolecular interactions by protein atoms in crystal lattices is presented, which shows that van der Waals interactions dominate in crystal formation.


Molecules ◽  
2020 ◽  
Vol 25 (21) ◽  
pp. 5157
Author(s):  
Erfan Rezvani Ghomi ◽  
Fatemeh Khosravi ◽  
Zahra Mossayebi ◽  
Ali Saedi Ardahaei ◽  
Fatemeh Morshedi Dehaghi ◽  
...  

Polyethylene (PE) is one the most used plastics worldwide for a wide range of applications due to its good mechanical and chemical resistance, low density, cost efficiency, ease of processability, non-reactivity, low toxicity, good electric insulation, and good functionality. However, its high flammability and rapid flame spread pose dangers for certain applications. Therefore, different flame-retardant (FR) additives are incorporated into PE to increase its flame retardancy. In this review article, research papers from the past 10 years on the flame retardancy of PE systems are comprehensively reviewed and classified based on the additive sources. The FR additives are classified in well-known FR families, including phosphorous, melamine, nitrogen, inorganic hydroxides, boron, and silicon. The mechanism of fire retardance in each family is pinpointed. In addition to the efficiency of each FR in increasing the flame retardancy, its impact on the mechanical properties of the PE system is also discussed. Most of the FRs can decrease the heat release rate (HRR) of the PE products and simultaneously maintains the mechanical properties in appropriate ratios. Based on the literature, inorganic hydroxide seems to be used more in PE systems compared to other families. Finally, the role of nanotechnology for more efficient FR-PE systems is discussed and recommendations are given on implementing strategies that could help incorporate flame retardancy in the circular economy model.


1984 ◽  
Vol 20 (2) ◽  
pp. 161-163
Author(s):  
G. V. Ivanov ◽  
V. G. Surkov ◽  
L. N. Karmadonov ◽  
A. M. Viktorenko

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