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Confined synthesis and integration of functional materials in sub-nanoliter volumes

机译:亚纳升以下体积的功能材料的受限合成和整合

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摘要

We present a novel microchip-based approach to combine the synthesis, characterization, and utilization of different functional materials on a single platform. A two-layer microfluidic device comprising 10 parallel actuated reaction chambers with volumes of a few hundred picoliters is used to localize and confine the synthesis, while the surfaces of the reaction chambers comprise an electrode array for direct integration and further characterization of the created crystalline assemblies without the need for further manipulation or positioning devices. First we visualized and evaluated the dynamics of our method by monitoring the formation of a fluorescent metal-organic complex (Zn(bix)). Next, we induced the site-specific growth of two types of organic conductive crystals, AuTTF and AgTCNQ, directly onto the electrode arrays in one- and two-step reactions, respectively. The performance of the created AgTCNQ crystals as memory elements was thoroughly examined. Moreover, we proved for first time that AuTTF composites can be used as label-free sensing elements.
机译:我们提出了一种新颖的基于微芯片的方法,在一个平台上结合了不同功能材料的合成,表征和利用。两层微流控设备包括10个平行致动的反应室,其容积为几百微微升,用于定位和限制合成,而反应室的表面则包括一个电极阵列,用于直接集成和进一步表征生成的晶体组件无需进一步操作或定位设备。首先,我们通过监视荧光金属-有机配合物(Zn(bix))的形成来可视化和评估我们方法的动力学。接下来,我们分别通过一步反应和两步反应,将两种类型的有机导电晶体AuTTF和AgTCNQ定向生长在电极阵列上。彻底检查了创建的AgTCNQ晶体作为存储元件的性能。此外,我们首次证明了AuTTF复合材料可以用作无标签的传感元件。

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