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首页> 外文期刊>Composites >Novel hybrid nanocomposite based on Poly(vinyl alcohol)/ carbon quantum dots/fullerene (PVA/CQDs/C_(60)) for thermoelectric power applications
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Novel hybrid nanocomposite based on Poly(vinyl alcohol)/ carbon quantum dots/fullerene (PVA/CQDs/C_(60)) for thermoelectric power applications

机译:基于聚乙烯醇/碳量子点/富勒烯(PVA / CQDs / C_(60))的新型杂化纳米复合材料

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In this literature, hybrid polyvinyl alcohol/carbon quantum dots/fullerene (PVA/CQDs/C-60) nanocomposite films were fabricated by using casting technique for the first time. Microwave synthesized carbon quantum dots (CQDs) and Fullerene (C-60) were synergistically incorporated in poly(vinyl alcohol) matrix. Addition of the hybrid CQDs/C-60 nanoparticles enhances the mechanical, thermal and thermo-mechanical parameters of the nanocomposite. CQDs nanoparticles were used here to enhance the electrical conductivity (sigma(electrical)), while C-60 was used to improve the Seebeck coefficient (S-seebeck), obstruct the thermal conductivity (K-thermal) and produce synergistic influence to improve the thermoelectric behaviour. With doping of the hybrid (CQDs/C-60) nanoparticles into (PVA/CQDs/C-60) nanocomposite, the electrical conductivity (sigma(electrical)) increased from (100-690 S/cm), and thermal conductivity (K-thermal) changed from (0.35-0.64 W/m K-2), while the Seebeck coefficient (S-seebeck) improved by 2 order. In addition, the nanocomposite demonstrated a power factor (PF) as high as (2.1 x 10(-4) W/m K-2) and a high figure of merit (ZT) (0.16) at a ratio (CQDs:C-60 =15:5) at 300 K. Finally, these nanocomposites have a potential prospective application in thermoelectric devices thanks to their promising thermoelectric properties and easy scaling up.
机译:在该文献中,杂化聚乙烯醇/碳量子点/富勒烯(PVA / CQDs / C-60)纳米复合膜是首次采用流延技术制备的。将微波合成的碳量子点(CQDs)和富勒烯(C-60)协同掺入聚乙烯醇基质中。杂化CQDs / C-60纳米颗粒的添加增强了纳米复合材料的机械,热和热机械参数。 CQDs纳米颗粒用于增强电导率(sigma(electrical)),而C-60用于改善塞贝克系数(S-seebeck),阻碍热导率(K-thermal)并产生协同影响以改善电导率。热电行为。通过将杂化(CQDs / C-60)纳米颗粒掺入(PVA / CQDs / C-60)纳米复合材料中,电导率(sigma(electrical))从(100-690 S / cm)增加,热导率(K -热)从(0.35-0.64 W / m K-2)更改,而塞贝克系数(S-seebeck)提高了2个数量级。此外,纳米复合材料的功率因数(PF)高达(2.1 x 10(-4)W / m K-2),品质因数(ZT)(0.16)高(CQDs:C- 60 = 15:5)在300K。最后,这些纳米复合材料因其有前途的热电特性和易于放大的尺寸而在热电设备中具有潜在的应用前景。

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