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Urchin-like polypyrrole nanoparticles for highly sensitive and selective chemiresistive sensor application

机译:Urchin-like聚吡咯纳米粒子高度敏感和选择性chemiresistive传感器应用程序

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摘要

Urchin-like polypyrrole (ILPPy) nanoparticles with various diameters were fabricated using a dual-nozzle electrospray and vapor deposition polymerization (VDP), Metal oxide nanoneedle-decorated PPy (FePPy) particles were fabricated as starting materials for deposition of a PPy layer on the metal oxide surface. The FePPy particles were prepared by heating and stirring an aqueous solution of the metal precursor and electrosprayed PPy (E_PPy) particles with nucleated sites on the surface. ILPPys with a maximized surface area were then formed by soaking in an initiator solution followed by VPD. The U_PPy particles were evaluated in various hazardous chemical gas sensors at room temperature. Because of their larger surface area, ILPPy based chemiresistive sensors exhibited greater sensitivity and ca. 10-100 times higher minimum detectable levels (MDLs) of common analytes than pristine PPy particle-based sensors. For example, the MDL of NH3 was approximately 0.01 ppm, which is better than that observed for other conducting polymer nanostructures. Our new fabrication methodology promises to be an effective approach for fabrication of hybrid nanostructures for future sensing technologies.
机译:Urchin-like聚吡咯(ILPPy)纳米颗粒各种直径被组合使用dual-nozzle电喷射和汽相淀积聚合(VDP),金属氧化物nanoneedle-decorated PPy (FePPy)粒子作为沉积起始原料制作的在金属氧化物表面的PPy层。FePPy粒子被加热和准备激动人心的水溶液中金属前体和电喷射PPy (E_PPy)粒子表面与有核站点。ILPPys表面积与最大化由浸泡在发起者的解决方案VPD紧随其后。评估在各种有害化学气体传感器在室温下。更大的表面积,ILPPy chemiresistive为基础传感器表现出更大的敏感性和ca。提高最低可检测水平的10 - 100倍比原始的PPy (MDLs)共同分析物的particle-based传感器。NH3大约是0.01 ppm,这是更好的为其它导电聚合物比观察纳米结构。承诺是一种有效的方法未来制造的混合纳米结构传感技术。

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