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Polyvinyl alcohol covalently grafted CNT for free-standing, flexible, and high-performance thermoelectric generator film

机译:聚乙烯醇共价接枝用于独立式,柔性,高性能热电发电机膜的CNT

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摘要

We introduce a strategic approach to synthesize covalntly cross-linked carbon nanotube (CNT)-polymer nanocomposites, which can be applied as a free-standing and flexible organic thermoelectric generator film. Esterification of polyvinyl alcohol (PVA) to render PVA-COOH followed by an amide reaction with single-walled CNTs (SWCNTs) functionalized with amino groups (SWCNT-NH2) yielded a covalently grafted PVA/SWCNT composite film with an excellent dispersion of SWCNTs within the polymer matrix as confirmed using Fourier-transform infrared spectroscopy and scanning electron microscopy. This amide reaction could be further optimized with the addition of a small amount of Triton (TM) X-100, which resulted in a better dispersion of SWCNT prior to the amide condensation reaction. Consequently, a covalently cross-linked PVA/SWCNT composite film showed better Seebeck coefficients than those of previously reported non-covalently, physically wrapped polymer/CNT composite films, resulting in a high power factor up to 275 mu W m(-1) K-2. Furthermore, a covalent amide-linking between PVA and SWCNT yielded a free-standing film (30 x 30 mm) with excellent flexibility and notable shelf stability as confirmed by negligible changes in thermoelectric parameters after bending test for 10 000 times with a bending radius of 2 mm and also shelf stability test in ambient condition without any passivation layer for 30 d.
机译:我们介绍一种促进碳酸钙交联碳纳米管(CNT) - 聚合物纳米复合材料的战略方法,该纳米复合材料可以用作独立式和柔性有机热电发电机膜。聚乙烯醇(PVA)酯化以使PVA-COOH与用氨基(SWCNT-NH2)官能化的单壁CNT(SWCNT)呈酰胺反应,得到共价接枝的PVA / SWCNT复合膜,具有优异的SWCNT分散使用傅里叶变换红外光谱和扫描电子显微镜确认的聚合物基质。该酰胺反应可以通过加入少量的TM(TM)X-100进一步优化,这导致在酰胺缩合反应之前更好地分散SWCNT。因此,共价交联的PVA / SWCNT复合膜显示出比先前报道的非共价,物理包装的聚合物/ CNT复合膜更好的塞贝克系数,得到高达275μm(-1)k的高功率因数-2。此外,PVA和SWCNT之间的共价酰胺连接,其具有优异的柔性膜(30×30mm),具有优异的柔韧性和显着的货架稳定性,通过弯曲测试后热电参数的变化来证实,弯曲半径为10 000次,以弯曲半径2 mm,并且在环境条件下稳定性试验,没有任何钝化层30天。

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