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首页> 外文期刊>Angewandte Chemie >Fabrication of Self-Oscillating Micelles with a Built-In Oxidizing Agent
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Fabrication of Self-Oscillating Micelles with a Built-In Oxidizing Agent

机译:用内置氧化剂制造自振胶质胶束

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摘要

Various biological behaviors are fueled by "respiration", which is an example of catabolism. So far, we have reported various self-oscillating soft materials exhibiting bioinspired dynamic movements. These autonomous polymer systems are driven by the Belousov-Zhabotinsky (BZ) reaction, which is analogous to the tricarboxylic acid (TCA) cycle that is an integral part of respiration. However, in the BZ reaction, the external addition of an oxidizing agent is necessary to initiate the oxidation process, which is realized by intracellular moieties such as ubiquinone in living systems. Herein, we realized self-oscillating micelles that are driven without the external addition of an oxidizing agent. This was achieved by embedding the oxidizing source into the structure of the self-oscillating AB diblock copolymers. This strategy introduces a new function equivalent to intracellular oxidizing moieties, and is useful for the design of completely autonomous bioinspired materials.
机译:通过“呼吸”来推动各种生物行为,这是分解代谢的一个例子。 到目前为止,我们报告了各种自动振荡的软材料,展示了生物悬浮动态运动。 这些自主聚合物系统由Belousov-Zhabotinsky(BZ)反应驱动,其类似于三羧酸(TCA)循环,其是呼吸的一部分。 然而,在BZ反应中,氧化剂的外部添加是为了引发氧化过程,其通过细胞内部分如泛醌在生物系统中实现。 在此,我们实现了在没有外部添加氧化剂的情况下驱动的自振胶质胶束。 这是通过将氧化源嵌入自振荡AB二嵌段共聚物的结构来实现的。 该策略介绍了一种相当于细胞内氧化部分的新功能,可用于设计完全自主的生物悬浮材料。

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