1 |
Controlling interfacial instabilities in PP/EVOH coextruded multilayer films through the surface density of interfacial copolymers Vuong S, Leger L, Restagno F Polymer Engineering and Science, 60(7), 1420, 2020 |
2 |
Achieving directional migration of hindered phenols in polymer-based damping hybrid via the construction of alternating layers Xu KM, Hu QM, Wu H, Guo SY, Zhang FS Polymer Engineering and Science, 60(12), 3001, 2020 |
3 |
Polypropylene/polyethylene multilayer separators with enhanced thermal stability for lithium-ion battery via multilayer coextrusion Li YJ, Pu HT, Wei YL Electrochimica Acta, 264, 140, 2018 |
4 |
Facile fabrication of multilayer separators for lithium-ion battery via multilayer coextrusion and thermal induced phase separation Li YJ, Pu HT Journal of Power Sources, 384, 408, 2018 |
5 |
From equilibrium lamellae to out-of-equilibrium cylinders in triblock copolymer nanolayers obtained via multilayer coextrusion Montana JS, Roland S, Richaud E, Miquelard-Garnier G Polymer, 136, 27, 2018 |
6 |
Nanostructuration effect on the mechanical properties of PMMA toughened by a triblock acrylate copolymer using multilayer coextrusion Montana JS, Roland S, Richaud E, Miquelard-Garnier G Polymer, 149, 124, 2018 |
7 |
Breakup behavior of nanolayers in polymeric multilayer systems - Creation of nanosheets and nanodroplets Feng JX, Zhang ZY, Bironeau A, Guinault A, Miquelard-Garnier G, Sollogoub C, Olah A, Baer E Polymer, 143, 19, 2018 |
8 |
A processing method with high efficiency for low density polyethylene nanofibers reinforced by aligned carbon nanotubes via nanolayer coextrusion Cheng JF, Pu HT, Du J Polymer, 111, 222, 2017 |
9 |
Kinetics of thin polymer film rupture: Model experiments for a better understanding of layer breakups in the multilayer coextrusion process Zhu Y, Bironeau A, Restagno F, Sollogoub C, Miquelard-Garnier G Polymer, 90, 156, 2016 |
10 |
A novel method for fabricating continuous polymer nanofibers Du J, Liu DB, Chen SQ, Wan DC, Pu HT Polymer, 102, 209, 2016 |