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A novel flexible electrically conductive adhesive (FECA) has been designed for electronic interconnect applications that require high flexibility on the flexible substrates and connectors. The physical properties of the resulting ECAs such as the elastic modulus, glass transition temperatures, adhesion strength and electrical properties were characterized by differential scanning calorimetry (DSC),...
Chemical reduction methods were used to synthesize tin/silver/copper (SnAgCu) alloy nanoparticles with various sizes. The thermal properties of the SnAgCu alloy nanoparticles were studied by differential scanning calorimetry. Both the particle size dependent melting temperature and latent heat of fusion have been observed. The as-synthesized SnAgCu alloy nanoparticles were dispersed into an acidic...
Tin/silver alloy nanoparticles with various sizes were synthesized by the chemical reduction method and their thermal properties were studied by differential scanning calorimetry. Both the particle size dependent melting temperature and latent heat of fusion have been observed. The melting point can be achieved as low as 194degC when the diameter of the nanoparticles is around 10 nm. The 64 nm (average...
Tin (Sn) nanoparticles with various sizes were synthesized from a chemical reduction method. Their morphological and thermal characterizations were studied. The high resolution transmission electron microscopy (HRTEM) study showed that significantly low level of oxides was formed. The thermal characterization by differential scanning calorimetry (DSC) exhibited the size dependency of the melting points
In order to accommodate environmental considerations, the environmentally friendly and biocompatible materials become increasingly important and attract a lot of research interest in recent years, while application of biocompatible materials are still in its infancy. In this paper, the biochemical building blocks, amino acid is used as a novel environmentally benign and biologically compatible curing...
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