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Open image in new window Fig. 10 Reduction of bond strength with embedment length.
The reduction of bond strength (with respect to 5D embedment bond strength) increased with the increase of embedment length (Fig. 10) for ECC/NC or LM/HM bar.
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Reduction of azo bond and reductive activation of pro-drugs at initial level is a crucial stage in degradation and detoxification mechanisms.
It is also interesting to note that the reduction of the bond length takes place in particular in the inner bonds which tend to have the same value.
It should be noted that peptides and proteins containing covalent disulfide bonds require reduction of these bonds for complete unfolding.
This strategy allowed to study the reduction of the bond strength by knowing the precise size of the voids.
The reduction of the bond strength with LWC was roughly proportional to ρd/2200, where ρd is the concrete dry density.
The metabolites were obtained as a result of reduction of double bond and hydroxylation.
The reduction of imine bond was established by the appearance of broad singlet peak at 9.35 ppm with integration of a single proton.
The cathodic peaks at −0.84 V for the Graphene-g-PPy and at −1.01 for the MWCNT-g-PPy correspond to the reduction of amino bond.
We have also observed a number of traces showing the reduction of disulfide bond in CD4D2 without the reduction of CD4D1 (Supporting Information, Figure 12), which might be due to different force dependence.
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