R.D. Murphy, R.O. Watts
Journal of Low Temperature Physics
The ring-opening polymerization of substituted cyclic carbonates with 1-(3,5-bis-trifluoromethyl-phenyl)-3-cyclohexyl-thiourea (TU)/1,8- diazabicyclo[5.4.0]undec-7-ene (DBU) organocatalysts afford highly functionalized oligocarbonates. The fluorescent alkaloid quinine can be readily incorporated into the oligocarbonates either by initiation from quinine or by ring-opening polymerization of a quinine-functionalized cyclic carbonate (MTC-Q). Copolymerization of MTC-Q with a boc-protected guanidinium cyclic carbonate affords, after deprotection, highly water-soluble cationic copolymers functionalized with both quinine and pendant guanidinium groups. When multiple quinine groups are attached to the oligomers, they exhibit minimal fluorescence due to self-quenching. Upon hydrolysis, the fluorescence intensity increases, providing a potential strategy for monitoring the hydrolysis rates in real time. © 2012 American Chemical Society.
R.D. Murphy, R.O. Watts
Journal of Low Temperature Physics
Hiroshi Ito, Reinhold Schwalm
JES
R.M. Macfarlane, R.L. Cone
Physical Review B - CMMP
F.J. Himpsel, T.A. Jung, et al.
Surface Review and Letters