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Wee Walker

机译:韦·沃克

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If each bit of digital data could be represented by a single molecule, memory devices could shrink by more than three orders of magnitude. But manufacturing such devices requires a simple way to keep molecules straight and organized. A team led by University of California, Riverside, chemist Ludwig Bartels has come up with a possible solution: molecules that walk in a straight line, without guides or templates. Called 9,10-dithioanthracene, or DTA, the new molecule sports two sulfur atoms protruding from a central structure made of linked benzene molecules. The Riverside researchers deposited DTA molecules on a smooth copper surface and cooled them to about -223 ℃; they found that the molecules would then form rows and begin to move in straight lines-almost as if they were walking. "Effectively, [the molecule] kind of rotates around each of the feet and wobbles forward or wobbles backward" says Bartels. Biomolecules such as DNA and proteins have exhibited similar behaviors, but they've generally required some kind of molecular guide to align them. By contrast, all Bartels's molecule needs is a bit of heat The wobbly molecules won't show up in the next Dell computer, but Bartels believes that similar molecules could ultimately be useful in making molecular memory devices. The work is amazing" says Rice University chemist James Tour, a leader in the field of molecular transport devices. The major challenge, he cautions, will be to tailor molecules to move in the same way on surfaces other than copper.
机译:如果数字数据的每一位都可以用一个分子表示,那么存储设备的容量将缩小三个数量级以上。但是制造这种设备需要一种简单的方法来保持分子笔直和有序。由加利福尼亚大学河滨分校化学家路德维希·巴特尔斯(Ludwig Bartels)领导的团队提出了一种可能的解决方案:分子在一条直线上行走,没有向导或模板。这种称为9,10-二硫代蒽(DTA)的新分子带有两个硫原子,这些硫原子从连接的苯分子构成的中心结构中突出。 Riverside研究人员将DTA分子沉积在光滑的铜表面上并将其冷却至-223℃;他们发现分子随后将成排并开始直线移动,几乎就像它们在行走一样。 “有效的是,(这种分子)绕着每只脚旋转,并向前或向后摆动。”巴特尔斯说。 DNA和蛋白质之类的生物分子表现出相似的行为,但是它们通常需要某种分子导向来使其对齐。相比之下,Bartels的所有分子需求都有些发热量。颤抖的分子不会出现在下一台Dell计算机中,但是Bartels相信类似的分子最终可以用于制造分子存储设备。这项工作是惊人的。”赖斯大学化学家詹姆斯·图尔(James Tour)说,他是分子传输装置领域的领导者。他警告说,主要挑战将是使分子在铜以外的表面上以相同的方式移动。

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