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Investigation of temperature dependency on the propulsion of disklike nanoswimmers

机译:对软质纳米百摩尔推进温度依赖性的研究

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Flight vehicles can soar around Earth via ejecting the combusted gases in the space and bio-molecular motor proteins possess the ability to walk along the tracts through hydrolyzing adenosine triphosphate (ATP) in cells. Inspired by flight vehicles and naturally occurring bio-molecular protein motors, miniaturized disk-like nanoswimmers are proposed, which are composed of three different metals;;gold (Au), nickel (Ni), and platinum (Pt). The proposed nanoswimmers are fabricated via a layer-by-layer deposition method base on nano-electro-mechanical systems (NEMS) technology, whereby Pt functions as the chemical catalyst for the decomposition of hydrogen peroxide (H2O2) to produce oxygen (O2) bubbles detaching from its surface, which in turn generate recoil force to thrust nanoswimmers propelling forward. Herein, bubble propulsion mechanism originating from momentum change of a Au-Ni-Pt nanoswimmer-O2 bubble integral system is proposed to investigate the propulsion of nanoswimmers. Experiments are mainly focused on characterizing the propulsion of nanoswimmers in diluted H2O2 by changing the temperature of.the solution. Results show that Au-Ni-Pt nanoswimmers are able to propel forward while the generated O2 bubbles are detached from the Pt-surface. The speeds of nanoswimmers are increased with the increment of temperature varying from 7°C to 57°C. it is concluded that the propulsion of nanoswimmers is temperature-dependent.
机译:飞行车辆可以通过喷射空间中的燃烧气体在地球周围翱翔,生物分子电机蛋白质具有通过水解腺苷三磷酸(ATP)在细胞中沿着散发物行走的能力。提出了由飞行辆和天然存在的生物分子蛋白质电机的启发,提出了由三种不同的金属组成;金(Au),镍(Ni)和铂(Pt)组成。所提出的纳米锭剂通过层型沉积方法基于纳米电力 - 机械系统(NEMS)技术来制造,由此Pt用作用于分解过氧化氢(H2O2)的化学催化剂,以产生氧气(O2)气泡从其表面上脱离,这反过来产生反冲力以推动纳米宽度推动前进的。这里,提出了源自Au-Ni-pt纳米莫默-O2气泡积分体的动量变化的泡出推进机制,研究了纳米纺织机的推进。实验主要集中在通过改变溶液的温度来表征稀释的H2O2中纳米锭剂的推进。结果表明,当产生的O2气泡与PT-Surse脱离时,Au-Ni-Pt纳米锭剂能够推进。纳米锭器的速度随温度的增量而增加,从7℃变化至57℃。得出结论,纳米锭剂的推进是温度依赖性的。

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