Design and Synthesis of Waterborne Polyurethanes
Проектирование и синтез водных полиуретанов
2018-03-15
SCID: 54.1/f5vg7677
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hair stylinglinoleic acidpolyurethane synthesisprecursor compositionwaterborne polyurethanes
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Abstract (AI)
Waterborne polyurethanes (WBPUs) have attracted increasing attention in a wide range of industrial applications because of their versatile properties as well as ecofriendly nature. Although extensive research has been carried out on WBPU synthesis, the roles of some of the key synthesis components remain unclear. In this study, through systematically controlling and fine tuning the precursor compositions and reaction conditions, over 300 WBPUs are synthesized. This research enables the roles of several key components that govern WBPU physicochemical properties and ultimately the potential WBPU applications to be identified. Using hair styling as an example, it is demonstrated that only the WBPUs with an optimal range of properties (e.g., Young's modulus >150 MPa, elongation at break: 15-300%, moisture uptake <10%) can achieve strong styling performance. To further improve the natural-feel sensory benefits in the final styling products, a number of fatty acids with different carbon chain lengths or unsaturation levels are incorporated into WBPUs. Among the ten fatty acids studied, linoleic acid is identified as the most preferred additive. Both in vitro and in vivo testing demonstrate that WBPUs with optimal properties are promising materials for developing strong, long-lasting styling products with natural feel.
Key Findings
1
Among ten fatty acids evaluated, linoleic acid was the preferred additive for improving the natural-feel sensory properties of WBPU styling products.
2
Effective hair-styling performance requires WBPUs with Young’s modulus above 150 MPa, elongation at break of 15–300%, and moisture uptake below 10%.
3
In vitro and in vivo tests show that WBPUs with optimized properties can produce strong, long-lasting hair-styling products with a natural feel.
4
Systematic control of precursor compositions and reaction conditions enabled synthesis of over 300 waterborne polyurethanes (WBPUs).
5
The study identifies how key synthesis components govern WBPU physicochemical properties and influence potential applications.
Research Object
waterborne polyurethanes (WBPUs) synthesized from systematically varied precursor compositions and reaction conditions
Research Subject
the roles of synthesis components and reaction conditions in governing WBPU physicochemical properties and hair-styling performance, including the effects of fatty-acid additives
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2018-03-15
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