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Radiation curable polymeric materials suffer from relatively poor mechanical properties.
However, such porous materials suffer from two major drawbacks: lower mechanical properties and decreasing plasma resistance.
However, most of the structural materials suffer severe damage when in contact with the HLM.
However, these materials suffer from structural damage, resulting in poor cycle performance.
Existing membrane materials suffer from low to mediocre selectivity: also, rubbery and glassy membrane materials have inverse selectivities.
However, these materials suffer from poor distribution of the reinforcement particles in the matrix and high content of porosity.
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However, gene carrier based on single materials suffers from intrinsic deficiencies.
NMR spectroscopy of solid materials suffers for strong dipolar and quadrupolar interactions, chemical shift anisotropy (CSA), and magnetic susceptibility.
In terms of mechanical properties, both types of GFRP materials suffered slight changes regarding tensile and interlaminar shear properties.
Thus, CCM made of these two materials suffers no optical damage unless perfect multi-point fixation ([000] or [0000]) is employed (Table 5).
However, transition metal oxide materials suffered from rapid capacity fade and high initial discharge specific capacity due to the enormous mechanical stress and pulverize during the charge-discharge cycles [8 10].
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CEO of Professional Science Editing for Scientists @ prosciediting.com