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Robust nanogap electrodes by self-terminating electroless gold plating

机译:健壮的nanogap电极自终止化学镀金

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Robust nanogap electrodes for nanodevices with a separation of 3.0 ± 1.7 nm were simultaneously mass-produced at a yield of 90% by a combination of electron beam lithography (EBL) and electroless gold plating (EGP). Nanogap electrodes demonstrated their robustness as they maintained their structure unchanged up to temperatures of 170 °C, during the isotropic oxygen plasma ashing removal of the amorphous carbon overlayer resulting from scanning electron microscopy observations, therefore maintaining their surface reactivity for EGP and formation of a self-assembled monolayer. A gold layer grows over the electrode surface during EGP, narrowing the separation between the electrodes; growth stops around 3 nm due to a self-termination phenomenon. This is the main factor in the high yield and reproducibility of the EGP process because it prevents contact between the electrodes. A 90% yield is achieved by also controlling the etching and physisorption of gold clusters, which is accomplished by reduction of triiodide ions and heat treatment of the EGP solution, respectively. A mixed self-assembled monolayer of octanethiol and decanedithiol can be formed at the surface of the nanogap electrodes after the oxygen plasma treatment, and decanethiol-protected Au nanoparticles were chemisorbed between the self-terminated nanogap electrodes via decanedithiol. Chemically assembled single-electron transistors based on the nanogap electrodes exhibit ideal, stable, and reproducible Coulomb diamonds.
机译:健壮的nanogap nanodevices与电极3.0±1.7 nm同时分离批量生产组合的收益率90%电子束光刻技术(EBL)和化学镀金(出路。电极演示了他们的鲁棒性保持结构不变温度为170°C,在各向同性氧等离子体灰化非晶的去除从扫描电子产生碳覆盖物显微镜观察,因此维护表面反应的出路和形成自组装单层。在电极表面在出路,缩小电极之间的分离;停止3海里由于self-termination左右的现象。产量和出路过程的再现性因为它可以防止之间的联系电极。控制腐蚀和物理吸附的黄金集群,这是通过减少三碘化离子和热处理的出路解决方案,分别。单层octanethiol decanedithiol可以形成表面的nanogap电极氧等离子体处理后,和decanethiol-protected Au纳米粒子是之间的化学吸附self-terminated nanogap通过decanedithiol电极。基于单电子晶体管组装nanogap电极表现出理想的、稳定的和可再生的库仑钻石。

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