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In Situ Oxidation Synthesis of p-Type Composite with Narrow-Bandgap Small Organic Molecule Coating on Single-Walled Carbon Nanotube: Flexible Film and Thermoelectric Performance

机译:用窄带隙小有机分子涂层对P型复合材料的原位氧化合成:柔性薄膜和热电性能

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Although composites of organic polymers or n-type small molecule/carbon nanotube (CNT) have achieved significant advances in thermoelectric (TE) applications, p-type TE composites of small organic molecules as thick surface coating layers on the surfaces of inorganic nanoparticles still remain a great challenge. Taking advantage of in situ oxidation reaction of thieno[3,4-b]pyrazine (TP) into TP di-N-oxide (TPNO) on single-walled CNT (SWCNT) surface, a novel synthesis strategy is proposed to achieve flexible films of TE composites with narrow-bandgap (1.19 eV) small molecule coating on SWCNT surface. The TE performance can be effectively enhanced and conveniently tuned by poly(sodium-p-styrenesulfonate) content, TPNO/SWCNT mass ratio, and posttreatment by various polar solvents. The maximum of the composite power factor at room temperature is 29.4 ± 1.0 μW m?1 K?2. The work presents a way to achieve flexible films of p-type small organic molecule/ inorganic composites with clear surface coating morphology for TE application.
机译:尽管有机聚合物或N型小分子/碳纳米管(CNT)的复合材料在热电(TE)应用中具有显着的进展,但小有机分子的P型TE复合材料作为无机纳米颗粒表面上的厚表面涂层仍然存在一个巨大的挑战。利用Inieno [3,4-B]吡嗪(TP)的原位氧化反应在单壁CNT(SWCNT)表面上的TP Di-N-氧化物(TPNO)中,提出了一种新的合成策略来实现柔性薄膜具有窄带隙(1.19eV)的Te复合材料在SWCNT表面上的小分子涂层。通过各种极性溶剂通过聚(钠-P-苯乙烯磺酸盐)含量,TPNO / SWCNT质量比和后处理可以有效地增强和方便地增强和方便地进行性能。室温下的复合功率因数的最大值为29.4±1.0μwm≤1k≤2。该工作呈现了一种方法来实现P型小有机分子/无机复合材料的柔性薄膜,具有透明表面涂层形态的TE应用。

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