TY - JOUR
T1 - Multiple-point adsorption of terbium ions by lead ion templated thermosensitive gel
T2 - Elucidating recognition of conformation in gel by terbium probe
AU - Güney, Orhan
PY - 2003/3
Y1 - 2003/3
N2 - Lead ion templated thermosensitive heteropolymer gel which has recognition ability of methacrylate pairs has been synthesized and characterized. The gel consists of a main monomer component, N-isopropylacrylamide (NIPA), responsible for volume phase transition, methacrylic acid (MAA) moieties imprinted as pairs to adsorb terbium ions and cross-links. An imprinting technique was applied using lead ion complex with methacrylate ligands in dioxane media. After gel was obtained, lead ions were removed by washing and the imprinted gel showed strong binding ability to terbium ions, comparable with that of the non-imprinted gel prepared without lead ions. It was found that the Tb3+ fluorescence intensity was considerably increased upon binding this ion to both imprinted and non-imprinted gels, but the largest enhancement of fluorescence intensity was observed when Tb3+ was bound to imprinted gel in shrunken state. This is because of the decrease of coordinated water molecules on Tb3+ and the strong binding of this ion to methacrylate pairs which are encoded within the weakly cross-linked network of imprinted gel.
AB - Lead ion templated thermosensitive heteropolymer gel which has recognition ability of methacrylate pairs has been synthesized and characterized. The gel consists of a main monomer component, N-isopropylacrylamide (NIPA), responsible for volume phase transition, methacrylic acid (MAA) moieties imprinted as pairs to adsorb terbium ions and cross-links. An imprinting technique was applied using lead ion complex with methacrylate ligands in dioxane media. After gel was obtained, lead ions were removed by washing and the imprinted gel showed strong binding ability to terbium ions, comparable with that of the non-imprinted gel prepared without lead ions. It was found that the Tb3+ fluorescence intensity was considerably increased upon binding this ion to both imprinted and non-imprinted gels, but the largest enhancement of fluorescence intensity was observed when Tb3+ was bound to imprinted gel in shrunken state. This is because of the decrease of coordinated water molecules on Tb3+ and the strong binding of this ion to methacrylate pairs which are encoded within the weakly cross-linked network of imprinted gel.
KW - Fluorescence
KW - Imprinting
KW - Molecular recognition
KW - Template
KW - Terbium
KW - Thermosensitive gels
UR - http://www.scopus.com/inward/record.url?scp=0037994320&partnerID=8YFLogxK
U2 - 10.1002/jmr.608
DO - 10.1002/jmr.608
M3 - Article
C2 - 12720275
AN - SCOPUS:0037994320
SN - 0952-3499
VL - 16
SP - 67
EP - 71
JO - Journal of Molecular Recognition
JF - Journal of Molecular Recognition
IS - 2
ER -