Polyurethane−urea microcapsules with limonene oil as the active agent were produced by interfacial polymerization, and their suitability for textile applications was studied. Experimental conditions for the textile substrates impregnation were based on industrial requirements and set up at laboratory scale using a mini-foulard. The success of the polymerization reaction leading to the formation of the polyurethane−urea shell was checked by Fourier transform infrared spectroscopy. Particle size distributions and morphology of the microcapsules were studied using a particle size analyzer (Coulter LS230), optical microscopy, and scanning electron microscopy. The effectiveness of the textiles impregnation and the durability of the impregnation ...
The review provides an overview of research findings on microencapsulation for functional textile co...
ABSTRACT: We use microfluidics to continuously produce monodisperse polyurea microcapsules (PUMCs) h...
A flat membrane combined with a mechanical stirrer has been used to prepare poly(methyl methacrylate...
Polyurethane−urea microcapsules with limonene oil as the active agent were produced by interfacial p...
Two technologies were studied to produce microcapsules for different application. Interfacial polyme...
The synthesis of poly(urethane–urea) shells (PUU) using poly(ethylene glycols) of different molecula...
Microencapsulation is a process in which around solid particles, liquids or molecular dispersions sp...
The majority of the commercially available microencapsulated fragrance systems with interest for tex...
This work is a contribution to the introduction of emergent technologies in the textile sector, name...
This work is a contribution to the introduction of emergent technologies in the textile sector, name...
Synthesis of polyurethane-urea microcapsules with perfume for textile application. In Particules - M...
Synthesis of polyurethane-urea microcapsules with perfume for textile application. In Particules - M...
Synthesis of polyurethane-urea microcapsules with perfume for textile application. In Particules - M...
The review provides an overview of research findings on microencapsulation for functional textile co...
The review provides an overview of research findings on microencapsulation for functional textile co...
The review provides an overview of research findings on microencapsulation for functional textile co...
ABSTRACT: We use microfluidics to continuously produce monodisperse polyurea microcapsules (PUMCs) h...
A flat membrane combined with a mechanical stirrer has been used to prepare poly(methyl methacrylate...
Polyurethane−urea microcapsules with limonene oil as the active agent were produced by interfacial p...
Two technologies were studied to produce microcapsules for different application. Interfacial polyme...
The synthesis of poly(urethane–urea) shells (PUU) using poly(ethylene glycols) of different molecula...
Microencapsulation is a process in which around solid particles, liquids or molecular dispersions sp...
The majority of the commercially available microencapsulated fragrance systems with interest for tex...
This work is a contribution to the introduction of emergent technologies in the textile sector, name...
This work is a contribution to the introduction of emergent technologies in the textile sector, name...
Synthesis of polyurethane-urea microcapsules with perfume for textile application. In Particules - M...
Synthesis of polyurethane-urea microcapsules with perfume for textile application. In Particules - M...
Synthesis of polyurethane-urea microcapsules with perfume for textile application. In Particules - M...
The review provides an overview of research findings on microencapsulation for functional textile co...
The review provides an overview of research findings on microencapsulation for functional textile co...
The review provides an overview of research findings on microencapsulation for functional textile co...
ABSTRACT: We use microfluidics to continuously produce monodisperse polyurea microcapsules (PUMCs) h...
A flat membrane combined with a mechanical stirrer has been used to prepare poly(methyl methacrylate...