TY - JOUR
T1 - Subcell-matched epitaxy of normal long chain compounds on polyethylene. II. On the (100) plane
AU - Okihara, Takumi
AU - Kawaguchi, Akiyoshi
AU - Ohara, Masayoshi
AU - Katayama, Ken ichi
PY - 1990/11
Y1 - 1990/11
N2 - Polythylene films with surfaces bounded with the (100) plane were prepared by high drawing of ultra-high molecular weight polyethylene mats made of solution-grown crystals. Normal long chain compounds, which are the same as examined in Paper I, were crystallized from solution by solvent evaporation and from the melt on the polyethylene films. Epitaxial crystallization was observed for those compounds that have the same orthorhombic subcell as the polyethylene unit cell. In the epitaxial overgrowth, the normal long chain compounds are arrayed with their axis parallel to the chain axis of polyethylene on the (100) polyethylene plane, performing the lattice coincidence of the (100) polyethylene plane with their corresponding subcell plane, irrespective of the chemical and crystal structures of the crystallized materials.
AB - Polythylene films with surfaces bounded with the (100) plane were prepared by high drawing of ultra-high molecular weight polyethylene mats made of solution-grown crystals. Normal long chain compounds, which are the same as examined in Paper I, were crystallized from solution by solvent evaporation and from the melt on the polyethylene films. Epitaxial crystallization was observed for those compounds that have the same orthorhombic subcell as the polyethylene unit cell. In the epitaxial overgrowth, the normal long chain compounds are arrayed with their axis parallel to the chain axis of polyethylene on the (100) polyethylene plane, performing the lattice coincidence of the (100) polyethylene plane with their corresponding subcell plane, irrespective of the chemical and crystal structures of the crystallized materials.
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U2 - 10.1016/0022-0248(90)90078-Y
DO - 10.1016/0022-0248(90)90078-Y
M3 - Article
AN - SCOPUS:0025516865
SN - 0022-0248
VL - 106
SP - 333
EP - 348
JO - Journal of Crystal Growth
JF - Journal of Crystal Growth
IS - 2-3
ER -