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Towards a microrotary motor driven by motor proteins

机译:迈向由马达蛋白驱动的微旋转马达

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Biological molecular motors, motor proteins, have a number of unique advantages over artificial motors, including efficient conversion of chemical energy into mechanical work and the potential for self-assembly into larger structures. This paper describes a biohybrid micro rotary motor using kinesin/ microtubule motor. We developed a simple fabrication process for a micro-structure by one-time deposition of parylene and a selective immobilization of protein molecules onto the specific region of its 3D microstructure. Using the parylene micro-rotor, we are challenging to make the micro motor, which smoothly and stably rotates by biological motor at least for few hours.
机译:生物分子马达(马达蛋白)相对于人工马达具有许多独特的优势,包括将化学能有效地转换为机械功,以及自我组装为较大结构的潜力。本文介绍了一种使用驱动蛋白/微管马达的生物杂交微旋转马达。我们通过一次沉积聚对二甲苯并将蛋白质分子选择性固定到其3D微结构的特定区域上,开发了一种用于微结构的简单制造工艺。使用聚对二甲苯微转子,我们需要制造一种微型电机,该微型电机能够通过生物电机平稳稳定地旋转至少几个小时。

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