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A rotary nano ion pump: a molecular dynamics study

机译:旋转纳米离子泵:分子动力学研究

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The dynamics of a rotary nano ion pump, inspired by the F 0 part of the F0F1-ATP synthase biomolecular motor, were investigated. This nanopump is composed of a rotor, which is constructed of two carbon nanotubes with benzene rings, and a stator, which is made of six graphene sheets. The molecular dynamics (MD) method was used to simulate the dynamics of the ion nanopump. When the rotor of the nanopump rotates mechanically, an ion gradient will be generated between the two sides of the nanopump. It is shown that the ion gradient generated by the nanopump is dependant on parameters such as the rotary frequency of the rotor, temperature and the amounts and locations of the positive and negative charges of the stator part of the nanopump. Also, an electrical potential difference is generated between the two sides of the pump as a result of its operation.
机译:以F0 F1 -ATP合酶生物分子马达的F 0 部分为动力,研究了旋转纳米离子泵的动力学特性。该纳米泵由一个转子和一个定子组成,该转子由两个带有苯环的碳纳米管构成,而定子由六个石墨烯片制成。分子动力学(MD)方法用于模拟离子纳米泵的动力学。当纳米泵的转子机械旋转时,将在纳米泵的两侧之间产生离子梯度。结果表明,纳米泵产生的离子梯度取决于参数,例如转子的旋转频率,温度以及纳米泵定子部分的正电荷和负电荷的数量和位置。另外,由于泵的操作,在泵的两侧之间产生电势差。

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