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The thermal properties of this blend material were stable up to 250 °C.
Nerve guidance conduits fabricated from the proposed polyanhydride blend material may serve as favorable biocompatible tissue engineering devices.
Empirical models were then developed to correlate the values of the Kuentz and Leuenberger equation coefficients to the blend material properties.
Today, the use of immiscible polymer blends is ubiquitous, nevertheless the principal technical hurdle to developing a novel blend material remains the effective compatibilization of the interface.
After processing such an extrusion and quenching no spherulites but an excellent distribution of nucleation centres was found by transmission electron microscopy, indicating an increase of the total interphasial volume within the blend material, which in turn improves the impact strength.
Figure 4shows the fitting results of this simplified rate equation model on the transient absorption decay profiles of localized polaron transition (P2) obtained from the P3HT/PCBM blend material with the lowest and highest PCBM concentration.
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The printed cellulose and its blend materials have wide applications in many high-tech fields.
The need for green renewable alternatives such as lignin to traditional fillers has driven recent interest in polylactic acid blend materials.
Figure 1 a A schematic representation of the P3HT/PCBM blend materials on the quartz substrate.
A schematic representation of the utilized blend materials drop casting on quartz substrate is shown in the Fig. 1a.
Figure 2 Transient absorption spectra for P3HT/PCBM blend materials with 1 (a), 10 (b), and 50 wt% (c) PCBM concentration.
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