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首页> 外文期刊>NRIAG Journal of Astronomy and Geophysics >Development of natural polymer/metal oxide nanocomposite reinforced with graphene oxide for optoelectronic applications
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Development of natural polymer/metal oxide nanocomposite reinforced with graphene oxide for optoelectronic applications

机译:用石墨烯氧化物加固天然聚合物/金属氧化物纳米复合材料的光电应用

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Nanocomposite natural polymer/metal oxide (NP/MO) is an attractive new technology for numerous applications as sensors, coatings, electronic devices, adhesives and optical circuits. NP includes cellulose Cel, chitosan Cs and sodium alginate NaAlg while MO are ZnO and CuO. Furthermore, modification of NP/MO with graphene oxide (GO) increases efficiency and stability of NP/MO in all its applications and fields. Theoretical calculations using density functional theory (DFT) were conducted to study the effect of using GO on electronic properties and thermal stability of NP/MO. Total dipole moment (TDM), HOMO/LUMO band gap energy (?E) and molecular electrostatic potential (MESP) were computed for the interaction of GO with NP/MO at B3LYP/LANL2DZ. Moreover, QSAR descriptors were also calculated for the same interactions. It was found that GO/NP/MO structure is auspicious for new materials with the efficient expense, more stable (physically and chemically), thermally stability and more sensitive, particularly GO/Cel/MO and GO/Cs/MO, while GO/Nav Alg/MO did not make significant changes.
机译:纳米复合材料天然聚合物/金属氧化物(NP / MO)是一种有吸引力的新技术,用于许多应用作为传感器,涂层,电子设备,粘合剂和光学电路。 NP包括纤维素塞,壳聚糖Cs和藻酸钠Naalg,而Mo是ZnO和CuO。此外,用石墨烯(GO)的NP / MO改性为所有应用和领域的NP / MO的效率和稳定性增加。进行了使用密度函数理论(DFT)的理论计算,以研究使用GO对NP / MO的热稳定性的影响。对于在B3LYP / LANL2DZ的NP / MO的相互作用,计算总偶极矩(TDM),同性计/卢米带隙能量(αe)和分子静电电位(MES)。此外,还针对相同的相互作用计算了QSAR描述符。发现GO / NP / MO结构对于具有有效费用,更稳定(物理和化学)的新材料,热稳定性和更敏感,特别是GO / CES / MO,GO / CS / MO,以及GO / CS / MO的新材料NAV ALG / MO没有进行重大变化。

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