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首页> 外文期刊>microsystems & nanoengineering >Fabrication of crystalline submicro-to-nano carbon wire for achieving high current density and ultrastable current
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Fabrication of crystalline submicro-to-nano carbon wire for achieving high current density and ultrastable current

机译:制备用于实现高电流密度和超稳定电流的亚微纳碳丝

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Crystalline carbon nanowire arrays were fabricated taking advantage of near-field electrospinning and stress decyanation. A novel fabrication method for carbon nanowires with radii ranging from similar to 2.15 mu m down to similar to 25 mu m was developed based on implementing nitrogen pretreatment on the silica surface and then aligning polymer nanofibers during near-field electrospinning at an ultralow voltage. Stress decyanation was implemented by subsequently pyrolyzing a polymer nanofiber array on the silica surface at 1000 degrees C for 1 h in an N-2 atmosphere, thus obtaining a crystalline carbon nanowire array with a nanostructured surface. Various crystalline nanostructures were fabricated on the nanowire surface, and their electrochemical performance was evaluated by cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS). Crystalline carbon wires with diameters ranging from micrometers to submicrometers displayed carbon nanoelectrode-like behavior with their CV curve having a sigmoidal shape. A highly crystalline carbon nanowire array showed distinct behavior, having a monotonically increasing straight line as its CV curve and a semicircular EIS spectrum; these results demonstrated its ultrastable current, as determined by electron transfer. Furthermore, nanocrystalline-structured carbon wires with diameters of similar to 305 nm displayed at least a fourfold higher peak current density during CV (4000 mA/m(2)) than highly crystalline carbon nanowires with diameters of similar to 100 nm and porous microwires with diameters of similar to 4.3 mu m.
机译:利用近场静电纺丝和应力脱硫制备了晶体碳纳米线阵列。在二氧化硅表面进行氮气预处理,然后在超低电压下近场静电纺丝过程中对聚合物纳米纤维进行对准,建立了一种半径从2.15 μm到25μm的碳纳米线的新制备方法。随后在N-2气氛中,在1000°C下将聚合物纳米纤维阵列在二氧化硅表面热解1小时,从而获得具有纳米结构表面的结晶碳纳米线阵列,从而实现应力去氰化。在纳米线表面制备了各种晶体纳米结构,并通过循环伏安法(CV)和电化学阻抗谱(EIS)评估了其电化学性能。直径从微米到亚微米不等的结晶碳丝表现出类似碳纳米电极的行为,其CV曲线呈S形。高度结晶的碳纳米线阵列表现出独特的行为,其CV曲线具有单调增加的直线和半圆形EIS谱;这些结果证明了它的超稳定电流,这是通过电子转移确定的。此外,直径为305 nm的纳米晶结构碳丝在CV期间的峰值电流密度(4000 mA/m(2))比直径为100 nm的高结晶碳纳米线和直径为4.3 μm的多孔微丝至少高出4倍。

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