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Finally, the failure mechanisms of these two composites are discussed.
And both of these two composites have a wide electrochemical window of more than 8 V vs. Li+/Li.
The electrochemical properties of these two composites were examined using cyclic voltammetry, cyclic charge-discharge, and electrochemical impedance spectroscopy.
This system benefits from the synergetic advantages of these two composites, namely the high ductility of SHCC and the high tensile strength of CFRPs.
The load displacement curves, of these two composites, were measured during stable crack propagation and the corresponding R-curves were calculated from standard fracture mechanics equations.
The mole percents of POSS-1 in these two composites are low (<0.5 and <1%, respectively) due to the high mass of POSS-1 (mwt=1305).
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Nitrite sensing performance of these two composite samples was evaluated with their emission quenching.
These two composite samples showed recyclability after being quenched by nitrite.
The microstructure, mechanical and tribological properties of these two composite coatings were investigated and compared.
These two composite samples and their core-shell structure were investigated by electron microscopy images, N2 adsorption/desorption, magnetic property, IR spectra and thermogravimetric analysis.
These two composite sensing samples were characterized carefully by means of electron microscopy, mesoporous analysis, magnetic response, IR spectra and thermal stability analysis.
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CEO of Professional Science Editing for Scientists @ prosciediting.com