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Influence of heating on spectroscopic, mechanical, and thermal properties of reduced graphene oxide-poly(vinyl alcohol) composite films

机译:加热对石墨烯氧化物聚(乙烯醇)复合膜的光谱,机械和热性能的影响

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The spectroscopic, uniaxial tensile, and thermal properties of reduced graphene oxide (rGO)-poly(vinyl) alcohol (PVA) composite films produced by using rGO synthesized using modified Hummer's method with varying weight ratio of rGO up to 10% were investigated by using an uniaxial tensile tester, Fourier Transform Infrared (Ft-IR)/Attenuated Total Reflectance (ATR) spectroscopy, and Differential Scanning Calorimeter (DSC) methods after heating process at different temperatures from room temperature to 200 degrees C. For unheated composite films, with increasing rGO weight ratio up to 10%, the Young's modulus of rGO-PVA films increased by approximately 2-3 times, conversely the strain at break values decreased greatly by about 40-50%. The heating process led to the significant improvement in the tensile strength and the Young's modulus, and great decrease in extensibility with respect to the unheated samples, e.g., the tensile strength and Young's modulus increased by 3-4 times and 8-10 times, respectively, for the heating temperatures up to 150 degrees C. With increasing heating temperature, the stress-strain curve of rGOPVA composite films turned from that of ductile and amorphous polymer to that of more brittle and rigid polymers. With increasing rGO content, the glass transition, the crystallization, and the melting temperatures increased and heating process generally shifted these temperatures to higher values. The great contribution of rGO content and the heating to the improvement of especially mechanical properties of rGO-PVA composite films thanks to the strong intermolecular interactions of rGO nanosheets with the PVA matrix molecules through hydrogen bonding and to the changes in the crystallinity ratio of PVA was shown in detail in the analysis of the spectral results. The relationship between the changes in the mechanical, structural, and thermal properties of the studied composite films was determined by using tensile testing, Ft-IR/ATR, and DSC methods.
机译:通过使用的使用改变的悍马方法合成的RGO与RGO的改变重量比的RGO合成的RGO合成的氧化石墨烯(RGO)-poly(乙烯基)醇(PVA)复合膜的光谱,单轴拉伸和热性质进行使用单轴拉伸测试仪,傅里叶变换红外(FT-IR)/减弱的总反射率(ATR)光谱,以及在加热过程中从室温的不同温度到200摄氏度的不同温度后的差示扫描量热计(DSC)方法。对于未加热的复合膜,有增加RGO重量比率高达10%,较年轻的RGO-PVA薄膜的模量增加了大约2-3次,相反,断裂值的应变大大降低了约40-50%。加热过程导致拉伸强度和杨氏模量的显着改善,并且相对于未加热样品的可伸展性降低,例如拉伸强度和杨氏模量分别增加了3-4次和8-10次,对于高达150℃的加热温度,随着加热温度的增加,RGOPVA复合膜的应力 - 应变曲线从延展岩和无定形聚合物的转变为更脆性和刚性聚合物的应力 - 应变曲线。随着RGO含量的增加,玻璃化转变,结晶和熔化温度的增加和加热过程通常将这些温度转移到更高的值。由于Rgo纳米片与PVA基质分子通过氢键和PVA结晶比的变化,Rgo-PVA复合膜的巨大贡献率和加热提高了RGO-PVA复合膜的特别力学性能的巨大贡献在分析光谱结果的情况下详细示出。通过使用拉伸试验,FT-IR / ATR和DSC方法测定研究的复合膜的机械,结构和热性能之间的关系。

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