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Writing with molecules on molecular printboards

机译:在分子印刷板上用分子书写

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摘要

Nanotechnology aspires to create functional materials with characteristic dimensions of the order 1 - 100 nm. One requirement to make nanotechnology work is to precisely position molecules and nanoparticles on surfaces, so that they may be addressed and manipulated for bottom-up construction of nanoscale devices. Here we review the concept of a "molecular printboard". A molecular printboard is a monolayer of host molecules on a solid substrate on which guest molecules can be attached with control over position, binding strength, and binding dynamics. To this end, cyclodextrins were immobilized in monomolecular layers on gold, on silicon wafers and on glass. Guest molecules ( for example, adamantane and ferrocene derivatives) bind to these host surfaces through supramolecular, hydrophobic inclusion interaction. Multivalent interactions are exploited to tune the binding strength and dynamics of the interaction of guest molecules with the printboard. Molecules can be positioned onto the printboard using supramolecular microcontact printing and supramolecular dip-pen nanolithography due to the specific interaction between the 'ink' and the substrate. In this way, nanoscale patterns can be written and erased on the printboard. Currently, the molecular printboard is exploited for nanofabrication, for example in combination with electroless deposition of metals and by means of supramolecular layer-by-layer deposition.
机译:纳米技术渴望制造具有特征尺寸为1-100 nm的功能材料。使纳米技术起作用的一项要求是将分子和纳米颗粒精确地定位在表面上,以便可以解决和操纵它们,以自底向上构造纳米级设备。在这里,我们回顾一下“分子印刷板”的概念。分子印刷板是宿主分子在固体基质上的单分子层,可在其位置,结合强度和结合动力学控制下将客体分子附着在其上。为此,将环糊精固定在金,硅晶片和玻璃上的单分子层中。客体分子(例如,金刚烷和二茂铁衍生物)通过超分子疏水包裹体相互作用与这些主体表面结合。利用多价相互作用来调节结合强度和客体分子与印刷板相互作用的动力学。由于“油墨”与基材之间的特定相互作用,可以使用超分子微接触印刷和超分子浸笔纳米光刻技术将分子定位到印刷板上。这样,可以在印刷板上写入和擦除纳米级图案。当前,分子印刷板被开发用于纳米加工,例如与金属的化学沉积相结合并且借助于超分子逐层沉积。

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