The reorganization and melting of single crystals of linear polyethylene with lozenge and truncated-lozenge habits has been studied in situ during slow continuous heating using atomic force microscopy. The morphological insights obtained are backed up by complementary experiments using transmission electron microscopy and differential scanning calorimetry and have enabled us to identify different stages of melting/recrystallization. Visible melting is preceded by local reorganization within the crystals, the extent of which depends crucially on the thermal history of the sample and can influence subsequent behavior such as the preferential melting of one crystal sector before another. This is followed by distortion of the crystal edges and ...
The morphological evolution of isolated individual single crystals deposited on solid substrates was...
In situ and ex‐situ atomic force microscopy (AFM) studies of annealing of solution‐grown single crys...
During rapid cooling at about 1000 °C/min linear polyethylene crystallizes into spherulitically orga...
Morphological features and the melting behaviour of truncated lozenge crystals have been studied. Fo...
Morphological features and the melting behaviour of truncated lozenge crystals have been studied. Fo...
Morphological features and the melting behaviour of truncated lozenge crystals have been studied. Fo...
Morphological features and the melting behaviour of truncated lozenge crystals have been studied. Fo...
Morphological features and the melting behaviour of truncated lozenge crystals have been studied. Fo...
The thickness of (110) and (200) sectors in truncated single crystals of linear polyethylene grown f...
The process of melting in poly(ethylene oxide) (PEO) is followed in real-time at elevated temperatur...
The atomic force microscopy study of thermal behavior of truncated crystal of LPE alternately crysta...
The morphological evolution of isolated individual single crystals deposited on solid substrates was...
The morphological evolution of isolated individual single crystals deposited on solid substrates was...
The morphological evolution of isolated individual single crystals deposited on solid substrates was...
The morphological evolution of isolated individual single crystals deposited on solid substrates was...
The morphological evolution of isolated individual single crystals deposited on solid substrates was...
In situ and ex‐situ atomic force microscopy (AFM) studies of annealing of solution‐grown single crys...
During rapid cooling at about 1000 °C/min linear polyethylene crystallizes into spherulitically orga...
Morphological features and the melting behaviour of truncated lozenge crystals have been studied. Fo...
Morphological features and the melting behaviour of truncated lozenge crystals have been studied. Fo...
Morphological features and the melting behaviour of truncated lozenge crystals have been studied. Fo...
Morphological features and the melting behaviour of truncated lozenge crystals have been studied. Fo...
Morphological features and the melting behaviour of truncated lozenge crystals have been studied. Fo...
The thickness of (110) and (200) sectors in truncated single crystals of linear polyethylene grown f...
The process of melting in poly(ethylene oxide) (PEO) is followed in real-time at elevated temperatur...
The atomic force microscopy study of thermal behavior of truncated crystal of LPE alternately crysta...
The morphological evolution of isolated individual single crystals deposited on solid substrates was...
The morphological evolution of isolated individual single crystals deposited on solid substrates was...
The morphological evolution of isolated individual single crystals deposited on solid substrates was...
The morphological evolution of isolated individual single crystals deposited on solid substrates was...
The morphological evolution of isolated individual single crystals deposited on solid substrates was...
In situ and ex‐situ atomic force microscopy (AFM) studies of annealing of solution‐grown single crys...
During rapid cooling at about 1000 °C/min linear polyethylene crystallizes into spherulitically orga...