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We have investigated anode performance of binder-free thick-film electrodes prepared by a gas-deposition method using the TiO2/Si composites obtained.
The remarkable performance of binder-free MnMoO4·nH2O on Ni foam suggest their potential use as positive electrode material for high performance supercapacitors.
Moreover, the favorable performance of binder-supported CaSO4 was explained by formation of CaAl2O4 which had excellent thermal stability and provided a stable nanosized framework between the crystal grains observed by field emission scanning electron microscope (FESEM).
Experimental results also indicate that healing performance of binders can be significantly enhanced by polymer modification.
The performance of binders is crucial in the briquetting of pulverized coal using medium or low pressures (Xu and Liu 2001), especially for high quality coal.
Some WMA additives may decrease viscosity, however, they may also degrade short-term and long-term performance of binders.
It implies that the chemical composition of different dosage of this warm additive with various binder types, directly affect the performance of binders subjected to various loading types at high temperatures.
The determination of high and low temperature performance grades of binder samples were supplied with the Superpave specification.
The healing performance of asphalt binder has a critical impact on the fatigue performance of asphalt binders, mixture and pavement.
Finally, the binder fracture energy density (FED) results satisfactorily rank mixture cracking performance thereby supporting the use of the binder fracture energy (BFE) test as an effective tool to quantitatively evaluate the relatively cracking performance of asphalt binder.
This is accomplished by considering particle interactions as well as the performance of the binder.
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