A series of waterborne polyurethane dispersions derived from jatropha oil-based polyol (JOL) with different OH numbers ranging from 138 to 217 mgKOH/g, were successfully prepared. Jatropha oil-based polyols were synthesized by epoxidation and oxirane ring opening using methanol. The JOLs produced were then used to prepare jatropha oil based waterborne polyurethane (JPU) dispersions by reaction with isophrene diisocyanate (IPDI). Dimethylol propionic acid (DMPA) was used as an internal emulsifier to enable the dispersion of polyurethane in water. The influence of the OH number, DMPA content and hard segment content on the stability of the wet JPU dispersions, as well as the physical, mechanical and thermal properties of the dry JPU films wer...
Jatropha oil-based polyol (JOL) was prepared from crude Jatropha oil via an epoxidation and hydroxyl...
Waterborne polyurethane dispersion (PUD) was synthesized by using inverse dispersion prepolymer tech...
Three waterborne polyurethane dispersions derived from polyester, polyether and polycarbonate diols ...
The transition from solvent-borne to waterborne polyurethane (PU) coatings is driven by the stringen...
Nowadays, there is a significant trend away from solvent-based polyurethane systems towards waterbor...
The utilization of vegetable oil in the production of polymeric material has gained interest due to ...
The utilization of vegetable oil in the production of polymeric material has gained interest due to ...
Jatropha oil-based waterborne polyurethane (JPU) dispersions were produced by polymerising the jatro...
A new vegetable oil-based polyol has been successfully functionalized for polyurethane fabrication. ...
Three water-based polyurethane dispersions (PUD) were synthesized by modified dispersing procedure u...
Renewable resources, especially natural oils, have received increasing attention as raw materials fo...
Coatings made of waterborne polyurethane dispersions are a promising alternative to solvent-borne on...
This dissertation discusses the synthesis and characterization of environmentally-friendly waterborn...
Jatropha oil-based polyol (JOL) was prepared from crude Jatropha oil via an epoxidation and hydroxyl...
A low cost, abundant, and renewable vegetable oil source has been gaining increasing attention due t...
Jatropha oil-based polyol (JOL) was prepared from crude Jatropha oil via an epoxidation and hydroxyl...
Waterborne polyurethane dispersion (PUD) was synthesized by using inverse dispersion prepolymer tech...
Three waterborne polyurethane dispersions derived from polyester, polyether and polycarbonate diols ...
The transition from solvent-borne to waterborne polyurethane (PU) coatings is driven by the stringen...
Nowadays, there is a significant trend away from solvent-based polyurethane systems towards waterbor...
The utilization of vegetable oil in the production of polymeric material has gained interest due to ...
The utilization of vegetable oil in the production of polymeric material has gained interest due to ...
Jatropha oil-based waterborne polyurethane (JPU) dispersions were produced by polymerising the jatro...
A new vegetable oil-based polyol has been successfully functionalized for polyurethane fabrication. ...
Three water-based polyurethane dispersions (PUD) were synthesized by modified dispersing procedure u...
Renewable resources, especially natural oils, have received increasing attention as raw materials fo...
Coatings made of waterborne polyurethane dispersions are a promising alternative to solvent-borne on...
This dissertation discusses the synthesis and characterization of environmentally-friendly waterborn...
Jatropha oil-based polyol (JOL) was prepared from crude Jatropha oil via an epoxidation and hydroxyl...
A low cost, abundant, and renewable vegetable oil source has been gaining increasing attention due t...
Jatropha oil-based polyol (JOL) was prepared from crude Jatropha oil via an epoxidation and hydroxyl...
Waterborne polyurethane dispersion (PUD) was synthesized by using inverse dispersion prepolymer tech...
Three waterborne polyurethane dispersions derived from polyester, polyether and polycarbonate diols ...