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纳米花:在多价抗衡离子存在下阳离子聚电解质星型聚合物的光诱导构象变化

Nanoblossoms: light-induced conformational changes of cationic polyelectrolyte stars in the presence of multivalent counterions.

作者信息

Plamper Felix A, Walther Andreas, Müller Axel H E, Ballauff Matthias

机构信息

Makromolekulare Chemie II, Physikalische Chemie I, and Bayreuther Zentrum für Kolloide und Grenzflächen, Universität Bayreuth, D-95440 Bayreuth, Germany.

出版信息

Nano Lett. 2007 Jan;7(1):167-71. doi: 10.1021/nl0625269.

Abstract

We analyze the structure of star-shaped polyelectrolytes in the presence of di- and trivalent counterions, and we use the gained knowledge to manipulate the polyelectrolyte's conformation by light. By applying dynamic light scattering and atomic force microscopy, we demonstrate that, at constant ionic strength, the arms of the cationic polyelectrolyte retract when adding multivalent counterions. Adding trivalent hexacyanocobaltate(III) ions leads to a collapse of the polyelectrolyte star even at low concentrations. This is shown by analysis of the star polyelectrolytes in solution as well as in the adsorbed state on mica surfaces. Considerably higher salt concentrations are necessary to obtain the same contraction of the polyelectrolyte star if the divalent tetracyanonickelate(II) ions are used. Sufficiently high multivalent counterion concentration leads finally to the precipitation of the polymer from the solution. We demonstrate that we can switch a polyelectrolyte star from the collapsed to the expanded state by transforming the trivalent hexacyanocobaltate(III) ions into a mixture of mono- and divalent ions by UV light. Thus, these collapsed stars react to light like "nanoblossoms". Moreover, polyelectrolyte stars precipitated through addition of the trivalent hexacyanocobaltate(III) ions can be redissolved by irradiation with light (photoinduced dissolution). Hence, the conformation and interaction of star polyelectrolytes can be switched by light. Possible applications of this novel way of manipulating polymers are discussed.

摘要

我们分析了在二价和三价抗衡离子存在下星形聚电解质的结构,并利用所获得的知识通过光来操控聚电解质的构象。通过动态光散射和原子力显微镜,我们证明,在恒定离子强度下,添加多价抗衡离子时阳离子聚电解质的臂会收缩。即使在低浓度下,添加三价六氰合钴(III)离子也会导致聚电解质星状物的塌陷。这在溶液中的星形聚电解质以及云母表面吸附状态的分析中得到了证实。如果使用二价四氰合镍(II)离子,则需要相当高的盐浓度才能使聚电解质星状物产生相同程度的收缩。足够高的多价抗衡离子浓度最终会导致聚合物从溶液中沉淀出来。我们证明,通过紫外光将三价六氰合钴(III)离子转化为单价和二价离子的混合物,我们可以将聚电解质星状物从塌陷状态转变为伸展状态。因此,这些塌陷的星状物对光的反应就像“纳米花朵”一样。此外,通过添加三价六氰合钴(III)离子沉淀的聚电解质星状物可以通过光照重新溶解(光致溶解)。因此,星形聚电解质的构象和相互作用可以通过光来切换。我们讨论了这种操纵聚合物新方法的可能应用。

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