1 |
Functional mimicry of carboxypeptidase A by a combination of transition state stabilization and a defined orientation of catalytic moieties in molecularly imprinted polymers Liu JQ, Wulff G Journal of the American Chemical Society, 130(25), 8044, 2008 |
2 |
Functional mimicry of the active site of carboxypeptidase A by a molecular imprinting strategy: Cooperativity of an amidinium and a copper ion in a transition-state imprinted cavity giving rise to high catalytic activity Liu JQ, Wulff G Journal of the American Chemical Society, 126(24), 7452, 2004 |
3 |
Catalytically active, molecularly imprinted polymers in bead form Strikovsky A, Hradil J, Wulff G Reactive & Functional Polymers, 54(1-3), 49, 2003 |
4 |
Enzyme-like catalysis by molecularly imprinted polymers Wulff G Chemical Reviews, 102(1), 1, 2002 |
5 |
ABA and star amphiphilic block copolymers composed of polymethacrylate bearing a galactose fragment and poly(epsilon-caprolactone) Chen YM, Wulff G Macromolecular Rapid Communications, 23(1), 59, 2002 |
6 |
Catalytic molecularly imprinted polymers using conventional bulk polymerization or suspension polymerization: Selective hydrolysis of diphenyl carbonate and diphenyl carbamate Strikovsky AG, Kasper D, Grun M, Green BS, Hradil J, Wulff G Journal of the American Chemical Society, 122(26), 6295, 2000 |
7 |
Polymerizable amidines - Adhesion mediators and binding sites for molecular imprinting Wulff G, Schonfeld R Advanced Materials, 10(12), 957, 1998 |
8 |
Imprinted membranes for sensor technology : Opposite behavior of covalently and noncovalently imprinted membranes Piletsky SA, Piletskaya EV, Panasyuk TL, El'skaya AV, Levi R, Karube I, Wulff G Macromolecules, 31(7), 2137, 1998 |
9 |
Investigations on Surface-Modified Bulk Polymers .1. Copolymers of Styrene with a Styrene Moiety Containing a Sugar Monomer Wulff G, Zhu L, Schmidt H Macromolecules, 30(16), 4533, 1997 |
10 |
Amphiphilic Polymers from Long-Chain (Z)-2-Alkoxyvinyl Acetates Wulff G, Jakoby K Macromolecules, 29(8), 2776, 1996 |