Polymers capable of recognizing adenine in aqueous medium were developed by the molecular imprinting technique using methacrylic acid and 4(5)-vinylimidazole as comonomers with ethylene glycol dimethacrylate as the cross-linking agent under different polymerization conditions. The affinity of these polymers for adenine and other nucleotide bases was compared. The association constant for the binding of adenine to the polymer is calculated to be 4.3 x 10(3)M(-1). Furthermore, binding of adenosine 5'-triphosphate (ATP) to the polymers was evaluated, and an enhanced binding compared to adenine was observed. The binding of ATP is pH dependent, with the maximum around pH 3. Results have been explained based on the hydrogen bonding and ionic interactions between ATP and the ligands on the polymer matrix. The catalytic effect of these polymers for the hydrolysis of ATP is briefly discussed.
SynopsisThe thermal polymerization of four structurally different bismaleimide resins, prepared by reacting maleic anhydride with four aromatic diamines, viz., 4,4'-diaminodiphenyl methane, 4,4'-diamino diphenyl ether, 4,4'-diamino diphenyl sulfone, and 3,3'-diamino diphenyl sulfone, was followed by differential scanning calorimetry (DSC). The enthalpy change and the kinetic constants for the polymerization reactions were evaluated from the DSC curves. Thermal stability of the cured polymers was studied by therrnogravimetry (TG). The kinetic parameters, viz., activation energy E and preexponential factor A, for the thermal decomposition of the cured bismaleimides were calculated from the TG curves using three nonmechanistic integral equations.The kinetic constants ( E and A) follow a trend similar to the thermal stability of the polymers.
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