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首页> 外文期刊>Nanoscale >Hydrogen bonding-driven rheological modulation of chemically reduced graphene oxide/poly(vinyl alcohol) suspensions and its application in electrospinning
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Hydrogen bonding-driven rheological modulation of chemically reduced graphene oxide/poly(vinyl alcohol) suspensions and its application in electrospinning

机译:氢bonding-driven流变的调制化学还原氧化石墨烯/聚(乙烯基酒精)悬浮液及其应用电纺的

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摘要

Rheology of graphene oxide (GO) and chemically reduced graphene oxide (RGO) nanosheets suspended in polyvinyl alcohol) (PVA) solution were investigated by altering nanosheet loading and reduction time of RGO in a wide range. A small amount (0.5 wt%) of GO and RGO in the dilute regime of filler resulted in a threefold increase and a fourfold decrease in steady viscosity at 0.01 s~(-1), respectively; increasing GO and RGO loadings in the semi-dilute regime of filler caused steady viscosity to increase to different degrees. Meanwhile, the steady viscosity of the suspension decreased gradually by more than one order of magnitude with increasing reduction time of RGO. By characterizing the microstructure in suspensions, the style and relative density of H-bonding between PVA chains and nanosheets were confirmed to account for the suspension rheology. Modulation of viscosity in a wide range via simply control of the loading and reduction time of RGO was hydrogen bonding-driven, which was successfully applied to electrospinning to prepare nanocomposite nanofibers. The addition of 1 wt% GO and RGO with respect to the polymer mass significantly improved PVA fibrous uniformity and fineness, and the spinnable concentration range of PVA was greatly broadened from (8.5-11.3 wt%) to (5-18 wt%). Meanwhile, the thermal stability of the nanofibers was also enhanced by GO or RGO addition.
机译:流变学的石墨烯氧化物(去)和化学减少氧化石墨烯(RGO) nanosheets暂停在聚乙烯醇(PVA)解决方案通过改变nanosheet加载和调查减少时间的广泛RGO。(0.5 wt %)的数量去RGO稀释政权的填料导致增加了三倍和一个四倍在稳定的粘度降低分别为0.01 s ~ (1);载荷semi-dilute政权的填料导致稳定的粘度增加不同度。悬挂逐渐降低了不止一个数量级增加减少时间RGO。悬浮液,风格和相对密度H-bonding PVA链和nanosheets之间确认帐户悬浮液流变学。调制通过广泛的粘度简单地加载和还原时间的控制RGO bonding-driven氢,这是成功地应用于电纺制备纳米复合材料的纳米纤维。1 wt %去RGO对聚合物的质量显著提高PVA纤维均匀性细度,可纺织的浓度范围PVA大大扩大的(8.5 - -11.3 wt %)(5日至18日期间召开wt %)。的纳米纤维也增强了或RGO加法。

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