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Patchable, flexible heat-sensing hybrid ionic gate nanochannel modified with a wax-composite

机译:Patchable、灵活的热感应混合离子门纳米通道wax-composite修改

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摘要

Heat-driven ionic gate nanochannels have been recently demonstrated, which exploit temperature-responsive polymer brushes based on wettability. These heat-sensing artificial nanochannels operate in a broad temperature-response boundary and fixed liquid cell environment, thereby experiencing limited system operation in the flat and solid state. Here we have developed a patchable and flexible heat-sensing artificial ionic gate nanochannel, which can operate in the range of the human body temperature. A wax-elastic copolymer, coated onto a commercial nanopore membrane by a controlled-vacuum filtration method, was used for the construction of temperature-responsive nanopores. The robust and flexible nanochannel heat sensor, which is combined with an agarose gel electrolyte, can sustain reversible thermo-responsive ionic gating based on the volumetric work of the wax-composite layers in a selective temperature range. The ionic current is also effectively distinguished in the patchable bandage-type nanochannel for human heat-sensing.
机译:受热量驱使离子门纳米通道最近证明,利用鬼屋方面聚合物刷子的基础上润湿性。在广泛的纳米通道操作温度响应边界和固定液细胞环境,从而经历有限系统操作在平面和固态。在这里,我们已经开发出一种patchable和灵活性热感应人工离子纳米通道的门,可操作范围内的人体吗温度。商业纳米孔膜的controlled-vacuum过滤方法,用于鬼屋方面的建设纳米孔。热传感器结合琼脂糖凝胶电解质,可以维持可逆的thermo-responsive离子门控的基础上体积的wax-composite层工作有选择性的温度范围。patchable也有效的区分对人类热感应bandage-type纳米通道。

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