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首页> 外文期刊>Nature Communications >Ultrahigh thermoelectric power factor in flexible hybrid inorganic-organic superlattice
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Ultrahigh thermoelectric power factor in flexible hybrid inorganic-organic superlattice

机译:柔性无机-有机杂化超晶格中的超高热电功率因数

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Hybrid inorganic–organic superlattice with an electron-transmitting but phonon-blocking structure has emerged as a promising flexible thin film thermoelectric material. However, the substantial challenge in optimizing carrier concentration without disrupting the superlattice structure prevents further improvement of the thermoelectric performance. Here we demonstrate a strategy for carrier optimization in a hybrid inorganic–organic superlattice of TiS2[tetrabutylammonium] x [hexylammonium] y , where the organic layers are composed of a random mixture of tetrabutylammonium and hexylammonium molecules. By vacuum heating the hybrid materials at an intermediate temperature, the hexylammonium molecules with a lower boiling point are selectively de-intercalated, which reduces the electron density due to the requirement of electroneutrality. The tetrabutylammonium molecules with a higher boiling point remain to support and stabilize the superlattice structure. The carrier concentration can thus be effectively reduced, resulting in a remarkably high power factor of 904?μW?m?1?K?2 at 300?K for flexible thermoelectrics, approaching the values achieved in conventional inorganic semiconductors.
机译:具有电子传输但具有声子阻挡结构的无机-有机杂化超晶格已经成为一种有前途的柔性薄膜热电材料。然而,在不破坏超晶格结构的情况下优化载流子浓度的重大挑战阻止了热电性能的进一步提高。在这里,我们展示了TiS2 [四丁基铵] x [己基铵] y的无机-有机杂化超晶格中载流子优化的策略,其中有机层由四丁基铵和己基铵分子的无规混合物组成。通过在中间温度下真空加热杂化材料,具有较低沸点的六铵分子被选择性地脱嵌,这由于电子中性的需要而降低了电子密度。沸点较高的四丁基铵分子保留下来,以支撑和稳定超晶格结构。因此,可以有效地降低载流子浓度,对于柔性热电器件,在300?K时,功率因数非常高,为904?μW?m?1?K?2,接近常规无机半导体所达到的值。

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