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Electro-molecular Assembly: Electrical Writing of Information into an Erasable Polysaccharide Medium

机译:分子组装:将信息电写入可擦除多糖介质中

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摘要

We report that information can be written into an erasable hydrogel medium by precisely imposing controlled electrical signals that trigger supramolecular self-assembly. We prepare the medium from a blend of two stimuli responsive self-assembling polysaccharides agarose (thermally responsive) and chitosan (pH-responsive). Upon cooling the blend, agarose forms the hydrogel medium while the embedded chitosan chains can be induced to self assemble in response to imposed pH cues. Importantly, these triggering pH-cues can be imposed electrically (by inserted electrodes) enabling complex messages (e.g., self-assembled multilayers) to be written within the hydrogel medium. The reversibility of these self-assembly mechanisms allow the written information, and the medium itself, to be erased. These physicochemical properties enable this dual responsive medium to encrypt information, while the responsiveness of this structural information and the biocompatibility of the medium suggest uses for accessing/reporting information in diverse life science applications, such as foods, cosmetics, medicine, and the environment.
机译:我们报告说,可以通过精确施加触发超分子自组装的受控电信号,将信息写入可擦写的水凝胶介质中。我们从两种刺激响应的自组装多糖琼脂糖(热响应)和壳聚糖(pH响应)的混合物中制备培养基。冷却混合物后,琼脂糖形成水凝胶介质,同时嵌入的壳聚糖链可响应于施加的pH提示而诱导自组装。重要的是,这些触发pH提示可以被电施加(通过插入的电极),使得复杂的消息(例如,自组装的多层)能够被写入水凝胶介质中。这些自组装机制的可逆性允许擦除书面信息以及介质本身。这些理化特性使这种双重反应性介质能够加密信息,而该结构信息的响应性和介质的生物相容性则表明了在各种生命科学应用(例如食品,化妆品,药​​品和环境)中访问/报告信息的用途。

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