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首页> 外文期刊>Journal of Materials Research and Technology >A programmable macroscale electrical field self-assembly array device for diverse thin film applications
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A programmable macroscale electrical field self-assembly array device for diverse thin film applications

机译:用于各种薄膜应用的可编程宏观电气场自组装阵列装置

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For a programmable mask-less patterning, we develop the novel electrophoretic deposition (EPD) method by a macroscale programmable patterning system, which has a large matrix EPD array device (2.5×2.5mm2electrodes with 10μm gap; 20 by 20 electrodes pattern) and printed circuit board controllers. We demonstrate programmed diverse micro/nano size (20nm–10μm) polystyrene beads pattern onto our 400 sites wafer scale chip, which carry out that individually penetrate electrical fields at each electrode. To pattern diverse materials onto non-conductive other substrate, 200nm nano-porous nitrocellulose membrane is laid onto the system. Cy3 17 bases DNA and 40nm biotin-coated beads with fluorophore are patterned onto nitrocellulose substrate. Furthermore, we demonstrate that 7–15nm diameters and 0.5–10μm lengths carbon nanotubes (CNT) are patterned onto the nitrocellulose substrate by the system. The CNT pattern films are simply lift off from the system. Also, CNT, poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) and (6,6)-phenyl-C61-butyric acide methyl ester and poly(3-hexylthiophene) are locally patterned, through the multi-layering process by the system. The multi-layered polymer device is assembled with indium tin oxide onto polyethylene terephthalate as photodetector. The polymer photodetector is demonstrated by light on (2.5×10?5A at 3V)/off condition. (3.5×10?5A at 3V). Finally, we demonstrate the fabrication of energy storage device, which is patterned LiCoO2(LCO)/CNT mixtures/CNT and graphite/CNT as a cathode and anode of secondary battery. The half-cell of 143.7μm deposited LCO mixtures is successfully operated with 112mA/g capacity for 3 times charging/discharging cycles.
机译:对于不那么可编程掩模的图案,我们通过宏观可编程图案化系统开发新型电泳沉积(EPD)方法,该图案系统具有大矩阵EPD阵列装置(2.5×2.5mm2电极,具有10μm间隙; 20乘20个电极图案)和印刷电路板控制器。我们向我们的400个位点晶片刻度芯片上展示编程的多样化微/纳米尺寸(20nm-10μm)聚苯乙烯珠子图案,其在每个电极上进行单独渗透电场。将不同的材料塑造到非导电的其他基材上,铺设200nm纳米多孔硝酸纤维素膜。 Cy317碱基DNA和40nM的荧光团涂覆的珠子在硝酸纤维素基质上被图案化。此外,我们证明了7-15nm直径和0.5-10μm的长度通过该系统将碳纳米管(CNT)图案化到硝酸纤维素基板上。 CNT图案膜简单地从系统抬起。此外,CNT,聚(3,4-乙二氧基噻吩):聚(苯乙烯磺酸盐)和(6,6) - 苯基-C61-丁基甲基酯和聚(3-己烯烯)通过多层工艺局部地图案化系统。多层聚合物装置用氧化铟锡组装到作为光电探测器的聚对苯二甲酸乙二醇酯上。通过亮亮(2.5×10→5a,3V)/截止条件,通过光进行说明的聚合物光电探测器。 (3V 3.5×10?5A)。最后,我们证明了能量存储装置的制造,其是图案化的LiCoO2(LCO)/ CNT混合物/ CNT和石墨/ CNT作为二次电池的阴极和阳极。 143.7μm沉积的LCO混合物的半电池成功地以112mA / g的电容成功运行,3倍充电/放电循环。

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