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The current study is focused on some design issues of resin-based composites affecting the longevity of the tooth restoration interface.
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Organic nucleating agents and inorganic nanoparticles, as well as their hybrid composites, affect the crystallization temperature and morphology of the monoclinic α-form of isotactic polypropylene (iPP).
The present study provides evidence that the CML T composites affect the behaviour of soil properties, which are specially influenced by pH, temperature, electrical conductivity and total dissolved solids (TDS).
The composite scaffold composition affected the extent of loss of polymer mass, scaffold length, and diameter, with the greatest loss of polymer mass equal to 15±5% over 26 weeks.
Inorganic particle shape and size of composite affect the scaffold mechanical property, biological property, and degradation.
The results of this shrinkage have been well documented, with a clinical problem being the development of physical stresses at the restoration interface [14, 20] and the type of composite affects the retention of composite restorations in dental cavities [21].
Next, the composition is varied widely, with Ar and additional oxygen atmosphere, regardless of whether the TiO2 phase, which is also contained in the composite, affects the difference in phase appearance (Sb and In2O3).
The gold in the composite affected the behavior of neural stem cells (NSCs) in vitro.
However, the addition of a salt precursor in the synthetic procedure makes a strong impact on the final morphology and structure of composites, directly affecting the battery performance.
The variation of matrix-type causes significant changes in the degree of difficulty for extruding lubricants onto the friction surface from the material interior and plastic deformation resistance of composites, thus affecting the formation of lubricating and transferring films, and wear mechanisms of the materials.
As Fig. 5 shows, different GO concentrations in the GO/PANI composite lead to different composite morphologies, affecting the electrochemical behaviors as the supercapacitor electrode [41].
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