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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >In situ self-assembly and photopolymerization for hetero-phase synthesis and patterning of conducting materials using soft oxometalates in thermo-optical tweezers
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In situ self-assembly and photopolymerization for hetero-phase synthesis and patterning of conducting materials using soft oxometalates in thermo-optical tweezers

机译:原位自组装和光聚合用于杂相合成,并使用热氧化镁液中的传导材料进行图案化热光镊子

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摘要

We demonstrate a novel method of simultaneous photoassisted hetero-phase synthesis, doping, and micro-scale patterning of conductive materials. The patterning is performed by controlled self-assembly mediated by a micro-bubble induced in an optical tweezers configuration. The high temperature generated due to the light field of the tweezers also drives diverse chemical reactions that lead to the in situ formation of conducting metal-oxides and polymers due to a charge transfer mechanism with soft oxometalates ( SOMs). We synthesize two conducting polymers - polypyrrole and polyaniline doped by the metal oxides Mo-O-2 and Mo-O-3, from dispersions of the respective organic compounds with the SOMs, and form permanent patterns out of them by continuous self-assembly arising from manipulation of the micro-bubble using Marangoni flows generated by the tweezers. The electrically conducting patterns of width varying between around 4-50 mm, are written in the form of simple Hall-bar geometries, and a four-probe measurement technique yields conductivities on the order of B450-600 Siemens cm(-1) - which is much higher than that reported for both polypyrrole and polyaniline in earlier work. This technique can easily be used in patterning complicated electrical circuits in mesoscopic length scales, and can also be extended to solution processed electronic device development by green chemical routes.
机译:我们展示了一种新的相同光学型异相相合成,掺杂和导电材料的微级图案的新方法。通过由光学镊子构造中的微气泡介导的受控的自组装进行图案化。由于镊子的光场产生的高温也驱动了不同的化学反应,这导致导致导致金属氧化物和聚合物的原位形成,由于具有软氧化株(SOM)。我们合成由金属氧化物Mo-O-2和Mo-O-3掺杂的两个导电聚合物 - 聚吡咯和聚苯胺,从各种有机化合物与SOM的分散,并通过连续自组装产生永久图案通过使用镊子产生的Marangoni流量来操纵微泡。宽度在大约4-50mm之间的导电图案以简单的霍尔杆几何形式写入,四个探针测量技术在B450-600西门子CM(-1)的顺序上产生导电性 - 哪个比早期工作中息肉和聚苯胺均报道的高得多。这种技术可以轻松地用于介于介面长度尺度的图案化复杂电路中,并且还可以通过绿色化学路线扩展到解决方案处理的电子设备开发。

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