Onclin Steffen, Huskens Jurriaan, Ravoo Bart Jan, Reinhoudt David N
Laboratory of Supramolecular Chemistry and Technology, MESA+Institute for Nanotechnology, University of Twente, P. O. Box 217, 7500 AE Enschede, The Netherlands.
Small. 2005 Aug;1(8-9):852-7. doi: 10.1002/smll.200500078.
Fifth-generation poly(propylene imine) dendrimers, modified with 64 apolar adamantyl groups, have been immobilized on cyclodextrin host monolayers ("molecular printboards") on glass by supramolecular microcontact printing. The immobilized dendrimers retain their guest-binding properties and function as "molecular boxes" that can be filled with fluorescent dye molecules from solution. Alternatively, part of the immobilized dendrimers were filled with dye molecules by cross-microcontact printing while the remaining, empty dendrimers were filled with a different dye from solution, resulting in alternating patterns of dye molecules. In addition, we demonstrate that encapsulation of dyes in immobilized dendrimers is reversible: immobilized molecular boxes can be filled with a dye, emptied, and subsequently refilled with a different dye.
第五代聚(丙烯亚胺)树枝状大分子,用64个非极性金刚烷基修饰,已通过超分子微接触印刷固定在玻璃上的环糊精主体单层(“分子印刷板”)上。固定化的树枝状大分子保留了它们的客体结合特性,并作为“分子盒”发挥作用,可以从溶液中填充荧光染料分子。或者,通过交叉微接触印刷将部分固定化树枝状大分子填充染料分子,而其余的空树枝状大分子则从溶液中填充不同的染料,从而形成染料分子的交替图案。此外,我们证明了将染料封装在固定化树枝状大分子中是可逆的:固定化的分子盒可以填充一种染料,排空,然后再填充不同的染料。