Surface Modification of Poly(methyl methacrylate) Used in the Fabrication of Microanalytical Devices
Citations Over TimeTop 1% of 2000 papers
Abstract
We report here the chemical modification of poly(methyl methacrylate) (PMMA) surfaces by their reaction with the monoanion of alpha,omega-diaminoalkanes (aminolysis reaction) to yield amine-terminated PMMA surfaces. It is found that the amine functionalities are tethered to the PMMA backbone through an alkane bridge to amide bonds formed during the aminolysis of the surface ester functionalities. The distribution of the amine termini is quite uniform as judged by fluorescence micrographs. It is found that the electroosmotic flow in aminated PMMA microchannels is reversed when compared to that in unmodified channels. In addition, it is demonstrated that enzymes can be immobilized onto the amine-terminated PMMA surfaces and are effective in the restriction digestion of dsDNAs. Finally, the availability of the surface amine groups is further demonstrated by their reaction with n-octadecane-1-isocyanate to form PMMA surfaces terminated with well-ordered and highly crystalline octadecane chains.
Related Papers
- → Amide‐exchange reactions in mixtures of N‐alkyl amides and in polyamide melt blends(1976)61 cited
- → Monitored aminolysis of 3-acylthiazolidine-2-thione : A new convenient synthesis of amide(1980)73 cited
- → Facile direct synthesis of amides from trichloroethyl esters using catalytic DBU(2018)3 cited
- → Research on the Influence of Stiffness of Copolymer(N-Tert-octylacrylamide/Acrylic acid/Methyl methacrylate/Butylaminoethyl Methacrylate/Hydroxypropyl Methacrylate) by Methyl Methacrylate and N-Tert-Octylacrylamide(2012)1 cited
- → Neighboring amide group participation in ester aminolysis in aprotic solvents(1976)2 cited