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To study the effect of processing conditions on structural and mechanical characterization of graphite and graphene oxide-reinforced PVA nanocomposite

机译:研究加工条件对石墨和石墨烯氧化物增强PVA纳米复合材料结构和力学表征的影响

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The aim of this paper is to investigate the effect of processing conditions for fabrication of PVA nanocomposite by varying exfoliation span and to study its surface and mechanical parameters. Graphite (xGnP) and graphene oxide (GO) are used as nanofiller which are prepared by Modified Hummer's method respectively. PVA nanocomposite has been prepared by solution casting route by varying xGnP and graphene oxide content and also itsexfoliation duration. The major concern is to synthesize a hybrid polymer nanocomposite having good interfacial and homogeneous dispersion of nanofiller. Excellent enhancement in tensile strength from 33 to 57.79MPa is examined on addition of 1% GO content in comparison with pristine PVA which is attributed to the existence of hydroxyl and carboxylic groups into PVA and GO nanoparticles, respectively. Storage modulus of 1% GO-reinforced PVA is two times higher than the neat PVA. Decrement in crystallinity is examined by DSC analysis. Size of crystal is evaluated by XRD analysis. SEM micrographs showed uniform distribution of nanoparticles throughout the polymeric surface. Polarizing optical micrographs displayed difference in exfoliated nanoparticles and its consistent distribution in the polymer matrix by varying exfoliationduration. Thermal studies also support the outcome which is observed from mechanical analysis.Graphical abstractGraphical abstract demonstrates tensile strength vs. wt% of nanofiller of A-xGnP, GO (1h), and B-xGnP, GO (1.5h), PVA nanocomposite thin films.
机译:本文的目的是通过不同的剥离跨度来研究PVA纳米复合材料的加工条件的影响,并研究其表面和机械参数。石墨(XGNP)和石墨烯氧化物(GO)用作纳米填充物,分别通过改性悍马的方法制备。 PVA纳米复合材料已通过溶液浇铸途径通过改变XGNP和石墨烯含量以及Itsexfoliation持续时间来制备。主要问题是合成含有良好界面和均匀分散的杂种聚合物纳米复合材料的纳米填充物。与丙氨酸PVA相比,通过归因于PVA和去纳米颗粒的丙基和羧基的存在,在添加1%GO含量的情况下,通过归因于PVA和纳米颗粒的丙基和羧基的存在,从33至57.79MPa的抗拉强度的增强。储存模量为1%升温PVA比整齐PVA高两倍。通过DSC分析检查结晶度衰落。通过XRD分析评估晶体的大小。 SEM显微照片显示出在整个聚合物表面的纳米颗粒的均匀分布。偏振光学显微照片通过改变脱墨饱和度在聚合物基质中显示出剥离纳米粒子的差异及其一致分布。热学研究还支持从机械分析中观察到的结果。图绘图摘要显示抗拉强度与A-XGNP,GO(1H)和B-XGNP,GO(1.5H),PVA纳米复合材料薄膜的拉伸强度与WT%。 。

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