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Building a nanostructure with reversible motions using photonic energy

机译:利用光子能以可逆运动构建纳米结构

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Recently, the specific hybridization of DNA molecules has been used to construct self-assembled devices, such as the mechanical device to mimic cellular protein motors in nature. Here, we present a new light-powered DNA mechanical device based on the photoisomerization of azobenzene moieties and toehold-mediated strand displacement. This autonomous and controllable device is capable of moving toward either end of the track, simply by switching the wavelength of light irradiation, either UV (365 nm) or visible (>450 nm). This light-controlled strategy can easily solve one main technical challenge for stepwise walking devices: the selection of routes in multipath systems. The principle employed in this study, photoisomerization-induced toehold length switching, could be further useful in the design of other mechanical devices, with the ultimate goal of rivaling molecular motors for cargo transport and macroscopic movement.
机译:最近,DNA分子的特异性杂交已用于构建自组装设备,例如自然界中模仿细胞蛋白马达的机械设备。在这里,我们介绍一种基于偶氮苯部分的光异构化和脚趾介导的链置换的新型光动力DNA机械装置。该自治且可控的设备能够简单地通过切换紫外线(365 nm)或可见光(> 450 nm)的光照射波长而向轨道的两端移动。这种光控策略可以轻松解决步进式行走设备的一项主要技术挑战:多径系统中的路线选择。在这项研究中采用的原理,即光致异构化引起的趾高长度转换,在其他机械设备的设计中可能会进一步有用,其最终目标是与分子马达在货物运输和宏观运动方面相媲美。

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