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Nanomolecular electronic devices based on AuNP molecule nanoelectrodes using molecular place-exchange process

机译:基于AUNP分子纳米电极使用分子 - 交换过程的纳微模电器

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摘要

The implementation of electronics applications based on molecular electronics devices is hampered by the difficulty of placing a single or a few molecules with application-specific electronic properties in between metallic nanocontacts. Here, we present a novel method to fabricate 20 nm sized nanomolecular electronic devices (nanoMoED) using a molecular place-exchange process of nonconductive short alkyl thiolates with various short chain conductive oligomers. After the successful place-exchange with short-chain conjugated oligomers in the nanoMoED devices, a change in device resistance of up to four orders of magnitude for 4,4 '-biphenyldithiol (BPDT), and up to three orders of magnitude for oligo phenylene-ethynylene (OPE), were observed. The place-exchange process in nanoMoEDs are verified by measuring changes in device resistance during repetitive place-exchange processes between conductive and nonconductive molecules and surface-enhanced Raman spectroscopy. This opens vast possibilities for the fabrication and application of nanoMoED devices with a large variety of molecules.
机译:基于分子电子器件的电子应用的实施受到在金属纳米接触之间的缺陷特异性电子性质的难度下难以将单一或少量分子置于金属纳米接触中。在这里,我们提出了一种使用具有各种短链导电低聚物的非导电短烷基硫醇酸盐的分子型交换过程来制造20nm大小的纳米电子器件(NanoMoed)的新方法。在纳米型器件中的短链缀合低聚物中成功交换后,4,4'--Biphyldithiol(BPDT)的装置电阻的变化高达四个数量级,最多三个少数寡核苷酸级 - 观察 - 乙烯(OPE)。通过在导电和非导电分子和表面增强的拉曼光谱之间测量重复的地方交流过程中的装置电阻变化来验证纳米型纳米型的放置过程。这为具有大量分子的纳米型器件的制造和应用开辟了巨大可能性。

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