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首页> 外文期刊>Annual Reports on the Progress of Chemistry, Section C. Physical Chemistry >Recent developments in photo- and redox-active dendrimers
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Recent developments in photo- and redox-active dendrimers

机译:具有光和氧化还原活性的树枝状聚合物的最新进展

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Dendrimers constitute a fascinating class of monodisperse, highly branched macromolecules which are the object of continuously increasing interest. The possibility of introducing selected chemical units in predetermined sites of the dendritic structure gives rise to the possibility of performing specific functions at the molecular level. The photophysical and electrochemcial properties of dendrimers in fluid solution will be reviewed, covering the years 2001-2002, as photons and electrons constitute the most simple means to induce molecular-level functions and to monitor the occurrence of such functions. It will be shown that photochemical and photophysical properties of dendrimers are particularly interesting since (i) cooperation among the photoactive components can allow the dendrimer to perform useful functions such as light harvesting and frequency converting, (ii) changes in the photophysical properties can be exploited for sensing purposes with signal amplification, and (iii) the presence of luminescence signals can offer a valuable handle to better understand the dendritic structure and superstructure. On the other hand, the electrochemical properties of dendrimers are interesting since (iv) redox active units present at the core of a dendrimer can be "encapsulated" by the surrounding branches, thus modulating the electron transfer rate, (v) the presence of multiple equivalent, non-interacting units gives rise to the simultaneous exchange of a large and predetermined number of electrons, and (vi) electroactive units of the same or different types can be placed in topologically equivalent or non-equivalent sites of a dendrimer to obtain specific redox patterns.
机译:树枝状大分子构成了令人着迷的单分散,高度支化的大分子,这是人们持续关注的目标。在树状结构的预定位点引入选择的化学单元的可能性引起在分子水平上执行特定功能的可能性。由于光子和电子是诱导分子水平功能和监测此类功能发生的最简单方法,因此将回顾2001年至2002年流体中树枝状聚合物的光物理和电化学性质。将显示树枝状聚合物的光化学和光物理性质是特别令人感兴趣的,因为(i)光活性组分之间的合作可以使树枝状聚合物执行有用的功能,例如光收集和频率转换,(ii)可以利用光物理性质的变化出于信号放大目的的传感目的;(iii)发光信号的存在可以提供一个有价值的方法,以更好地理解树状结构和超结构。另一方面,树枝状大分子的电化学性质是令人感兴趣的,因为(iv)树枝状大分子核心存在的氧化还原活性单元可以被周围的分支“包封”,从而调节电子转移速率,(v)存在多个等效的非相互作用单元可同时交换大量预定的电子,并且(vi)相同或不同类型的电活性单元可放置在树枝状聚合物的拓扑等效或非等效部位以获得特定的氧化还原模式。

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