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The VACNT forest not only enables strong interfacial bonding between the CF and the matrix but also greatly improve the k⊥ due to the good interfacial compatibility.
Achieving high heat conduction in the through-thickness direction (k⊥) is challenging for carbon fibre (CF) reinforced SiC matrix composite (CF/SiC) based heat resistant materials due to their anisotropic structures and weak bonding between the CF and the matrix.
In addition, GO/CF hybrid fibers were capable of high chemical reactivity due to the introduction of GO with many functional groups, which ensured them more likely to interact with cement hydrates due to the hydrogen bonding at interface and therefore benefited to strengthen the bonding between the CF and cement matrix.
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Surface treatment of CFs is generally employed to increase the surface functional groups and interfacial adhesion between the CFs and the surrounding polymer matrix.
Hierarchical structure consisting of graphene oxide (GO) grafted onto carbon fiber (CF) has been synthesized to improve the interfacial properties between the CFs and polymer matrix.
The registration of such ions proves that substituents at positions C-1, C-3, C-5, C-6, and C-8 are not involved in their formation (the ion at m/ z 284 perfectly reflects the structure of the ion obtained by heterolytic cleavage of the bond between the glucose moiety and the aglycone of carminic acid, cf. Scheme 1).
The C595scFv-Fc-IL2 C595scFv-Fc-IL2 C595scFv-Fc-IL2homodimer (cfusionure 3) that is likely to be formed by disulproteinonds between the isG1 Fc domains incorporatexpressedhe fusion protein between the scFv asd IL2 moiety.
It started with a prime phase in order to strengthen the bond between the required response and the subjective valence of the pictorial stimulus, thus bolstering the affective Simon effect (cf. Huijding et al., 2005).
The bond between the two was forged.
This helped further cement the bond between the two.
There are incredible bonds between the workers.
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