In semi-crystalline polymers a range of morphologies can be obtained in which a chain may traverse the amorphous region between the crystals or fold back into the crystals leading to adjacent or nonadjacent reentry, depending on the molecular architecture and crystallization conditions. This causes topological variations on the crystal surface and the occurrence of an interphase between the crystalline and amorphous domains, thus affecting the mechanical properties. In this chapter, we will discuss how the morphology within the interphase plays a prominent role in drawability, lamellar thickening and melting of thus crystallized samples. Normally, for linear polymers it is anticipated that extended chain crystals are thermodynamically most ...
In ultra-high molecular weight polyethylene (UHMW-PE), it is possible to obtain single chain forming...
We report on the direct evidence in real space of the crystal-amorphous interphase in a lamellar sem...
International audienceThe different levels of organization of matter in semicrystalline polymers are...
In semi-crystalline polymers a range of morphologies can be obtained in which a chain may traverse t...
In semi-crystalline polymers a range of morphologies can be obtained in which a chain may traverse t...
In semi-crystalline polymers a range of morphologies can be obtained in which a chain may traverse t...
In semi-crystalline polymers a range of morphologies can be obtained in which a chain may traverse t...
In semi-cryst. polymers, a range of morphologies can be obtained in which a chain may traverse the a...
The paper addresses the crystallization behavior of homogeneous branched polyethylenes, where the br...
The paper addresses the crystallization behavior of homogeneous branched polyethylenes, where the br...
The paper addresses the crystallization behavior of homogeneous branched polyethylenes, where the br...
The paper addresses the crystallization behavior of homogeneous branched polyethylenes, where the br...
The paper addresses the crystallization behavior of homogeneous branched polyethylenes, where the br...
The paper addresses the crystallization behavior of homogeneous branched polyethylenes, where the br...
Studies of extended chain crystals carried out over the last 10 years have been reviewed. Crystalliz...
In ultra-high molecular weight polyethylene (UHMW-PE), it is possible to obtain single chain forming...
We report on the direct evidence in real space of the crystal-amorphous interphase in a lamellar sem...
International audienceThe different levels of organization of matter in semicrystalline polymers are...
In semi-crystalline polymers a range of morphologies can be obtained in which a chain may traverse t...
In semi-crystalline polymers a range of morphologies can be obtained in which a chain may traverse t...
In semi-crystalline polymers a range of morphologies can be obtained in which a chain may traverse t...
In semi-crystalline polymers a range of morphologies can be obtained in which a chain may traverse t...
In semi-cryst. polymers, a range of morphologies can be obtained in which a chain may traverse the a...
The paper addresses the crystallization behavior of homogeneous branched polyethylenes, where the br...
The paper addresses the crystallization behavior of homogeneous branched polyethylenes, where the br...
The paper addresses the crystallization behavior of homogeneous branched polyethylenes, where the br...
The paper addresses the crystallization behavior of homogeneous branched polyethylenes, where the br...
The paper addresses the crystallization behavior of homogeneous branched polyethylenes, where the br...
The paper addresses the crystallization behavior of homogeneous branched polyethylenes, where the br...
Studies of extended chain crystals carried out over the last 10 years have been reviewed. Crystalliz...
In ultra-high molecular weight polyethylene (UHMW-PE), it is possible to obtain single chain forming...
We report on the direct evidence in real space of the crystal-amorphous interphase in a lamellar sem...
International audienceThe different levels of organization of matter in semicrystalline polymers are...