Javascript must be enabled to continue!
Synthesis of a novel polysulfide via the reaction of a thiol compound and oxidant towards polymer self-healing application
View through CrossRef
Introduction: This legion is an indiscernible virtue of polysulfide that it has been employed in a range of fields. In addition, the oxidation of thiol to reversible disulfide is a dramatically preponderant process in biology and chemistry, especially the production of healable polymers. Interestingly, thiol is widely utilized to synthesize numerous polymers through the thiol-click reaction. From the sound of it, our underlying intent in this research is the synthesis of thiol-ended polysulfide potential for the self-healing polymer. Method: In this study, the synthesis of polysulfide carrying the thiol terminal group was undertaken out of the oxidizing reaction in the presence of iodine. Its reaction time was monitored by means of TLC. Furthermore, state-of-the-art measurements of FT-IR, 1H-NMR and GPC were used to represent a great deal of valuable information pertaining to its structure and molecular weight. Result: After a period of 24 hours at room temperature, the reaction producing pure polysulfide was completed. The FT-IR and 1H-NMR results show that the polymer was successfully synthesized; moreover, its Mn is approximately 12000 g/mol. Conclusion: This study will play a vital role in facilitating the use of thiol-terminated polysulfide in the synthesis of self-healing materials in the not-too-distant future.
Viet Nam National University Ho Chi Minh City
Title: Synthesis of a novel polysulfide via the reaction of a thiol compound and oxidant towards polymer self-healing application
Description:
Introduction: This legion is an indiscernible virtue of polysulfide that it has been employed in a range of fields.
In addition, the oxidation of thiol to reversible disulfide is a dramatically preponderant process in biology and chemistry, especially the production of healable polymers.
Interestingly, thiol is widely utilized to synthesize numerous polymers through the thiol-click reaction.
From the sound of it, our underlying intent in this research is the synthesis of thiol-ended polysulfide potential for the self-healing polymer.
Method: In this study, the synthesis of polysulfide carrying the thiol terminal group was undertaken out of the oxidizing reaction in the presence of iodine.
Its reaction time was monitored by means of TLC.
Furthermore, state-of-the-art measurements of FT-IR, 1H-NMR and GPC were used to represent a great deal of valuable information pertaining to its structure and molecular weight.
Result: After a period of 24 hours at room temperature, the reaction producing pure polysulfide was completed.
The FT-IR and 1H-NMR results show that the polymer was successfully synthesized; moreover, its Mn is approximately 12000 g/mol.
Conclusion: This study will play a vital role in facilitating the use of thiol-terminated polysulfide in the synthesis of self-healing materials in the not-too-distant future.
Related Results
Thiol reductive stress activates the hypoxia response pathway
Thiol reductive stress activates the hypoxia response pathway
AbstractOwing to their capability to disrupt the oxidative protein folding environment in the endoplasmic reticulum (ER), thiol antioxidants such as dithiothreitol (DTT) are used a...
Barrier Polymers
Barrier Polymers
AbstractBarrier polymers are used for many packaging and protective applications. As barriers they separate a system, such as an article of food or an electronic component, from an...
Barrier Polymers
Barrier Polymers
AbstractBarrier polymers are used for many packaging and protective applications. As barriers they separate a system, such as an article of food or an electronic component, from an...
Performance of Self-Healing Cementitious Composites Using Aligned Tubular Healing Fiber
Performance of Self-Healing Cementitious Composites Using Aligned Tubular Healing Fiber
From the perspective of improving the self-healing method in construction, a tubular healing fiber was adopted as a container to improve the encapsulation capacity, which was avail...
Splitting of the disulfide bonds in polysulfide polymers by hydrazine
Splitting of the disulfide bonds in polysulfide polymers by hydrazine
AbstractThe action of hydrazine on desulfurized tetrasulfide polymer obtained from bis‐2‐chloroethyl formal leads to SS bond splitting and depolymerization. Our studies show that ...
Synthesis of polystyrene derivative‐silica hybrids via in situ thiol‐ene reaction in the sol–gel process
Synthesis of polystyrene derivative‐silica hybrids via in situ thiol‐ene reaction in the sol–gel process
AbstractPolystyrene derivative‐silica hybrids are synthesized via an in situ thiol‐ene reaction in the sol–gel process. Poly(p‐(3‐butenyl)styrene) (PBSt) which is a polymer having ...
Polymer-laden homogeneous shear-driven turbulent flow: a model for polymer drag reduction
Polymer-laden homogeneous shear-driven turbulent flow: a model for polymer drag reduction
Drag reduction (DR) under a turbulent boundary layer implies the suppression of turbulent momentum flux to the wall, a large-eddy phenomenon. Our hypothesis is that the essential m...
Influence of the average content of sulfur in polysulfide polymers on the depolymerization of polysulfide polymers by dithionite ions
Influence of the average content of sulfur in polysulfide polymers on the depolymerization of polysulfide polymers by dithionite ions
AbstractThe results of our studies show that it is possible to depolymerize polysulfide polymers with a nominal sulfur content in excess of 2 per segment of polymer, without previo...

