BACKGROUND: Solid surfaces possessing both superhydrophobic and superoleophilic properties have attracted great interest for fundamental research and potential application. However, fabrication of the reported surfaces is usually time-consuming and the wetability of the surfaces could not be achieved to the desired level in rugged environments.
Block copolymers of rigid, rodlike blocks coupled to flexible, coillike blocks offer the opportunity to study new aspects of microphase separation behavior. We term these polymers "rodcoil" in order to emphasize the difference in flexibility between the component blocks. This flexibility difference enriches the thermodynamic description
Summary: Hyperbranched poly(urea‐urethane)‐functionalized multiwalled carbon nanotubes (MWNT‐HPUs) have been synthesized by a one‐pot polycondensation of tolylene 2,4‐diisocyanate and diethanolamine in the presence of MWNTs terminated with multiple hydroxy groups. FT‐IR, Raman, 1H NMR, and 13C NMR spectra reveal that the HPU trees are covalently grafted onto the MWNT surfaces. After a high density of HPU trees (83.5 wt.‐%) is attached to the MWNTs, core‐shell nanostructures with MWNTs as the core and the HPU trees as the shell are formed. A loose and uniform nanotube network can be observed by TEM, SEM, and AFM. The resulting MWNT‐HPUs are soluble in polar solvents such as dimethylformamide, dimethylacetamine, 1‐methyl‐2‐pyrrolidinone, and dimethyl sulfoxide.Hyperbranched poly(urea‐urethane)s functionalized multiwalled carbon nanotubes.imageHyperbranched poly(urea‐urethane)s functionalized multiwalled carbon nanotubes.
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