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Enhancement of Micro Structural Properties of PVA Doped with MWCNT's and Metal oxide Nanocomposites Films

机译:用MWCNT和金属氧化物纳米复合膜掺杂PVA微结构性能的增强

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WO_3 nanoparticles were prepared by using precipitation method and the multiwall Carbon nanotubes (MWCNT's) were functionalized to make Carboxylated MWCNTs. Further, prepared WO_3 and carboxylated MWCNT were doped into PVA matrix by coagulation technique and PVA nanocomposites were prepared by simple solvent casting technique. The films were characterized by XRD, FTIR spectroscopy and AFM. FTIR spectroscopy reveals the intensity of absorption of radiation at 3624.55 cm~(-1) corresponds to the OH group of PVA. It changes in accordance with dopant concentration causing inter/intra molecular hydrogen bonding between the dopants and PVA back bone which leads to the complex formation. XRD data explores the crystalline nature of the film. It is found that for doping concentration x= 7.5 wt% the percentage crystallinity and crystallite size increases whereas micro structural strain and dislocation density decreases. An atomic force microscopy topographic analysis proves that the doped particles have an average size less than 15 nm, as confirmed by XRD data. It was found that roughness of the sample varies with dopant concentration causing variation in crystallinity.
机译:通过使用沉淀方法制备WO_3纳米颗粒,使多壁碳纳米管(MWCNT)官能化以制备羧化MWCNT。此外,通过凝固技术将制备的WO_3和羧化MWCNT掺杂到PVA基质中,通过简单的溶剂铸造技术制备PVA纳米复合材料。薄膜的特征在于XRD,FTIR光谱和AFM。 FTIR光谱揭示辐射吸收强度在3624.55cm〜(-1)对应于OH基团PVA。它根据掺杂剂浓度改变,导致掺杂剂和PVA背骨之间的间/内分子氢键合,这导致复杂的形成。 XRD数据探讨了薄膜的结晶性质。发现,对于掺杂浓度x = 7.5wt%,结晶度和微晶尺寸的百分比增加,而微结构应变和位错密度降低。原子力显微镜地形分析证明掺杂颗粒的平均尺寸小于15nm,如XRD数据的确认。发现样品的粗糙度随着结晶度的变化而变化而导致掺杂剂浓度。

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