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A novel super thermal insulation material: bamboo-like polymer nanotubes

机译:一种新型超级保温材料:竹状聚合物纳米管

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摘要

One-dimensional nanomaterials have widely applied in the fields of energy conversion and storage due to their exceptional performance because of the nano-size effect. Herein, we synthesized bamboo-like polymer nanotubes based on cationic polymerization using immiscible initiator nanodroplets that results in a hollow structure. The suspended microelectrode is fabricated to measure the axial thermal conductivity of a single polymer nanotube, which demonstrates that this hollow structure can reduce its effective thermal conductivity. The experimental results show that its effective thermal conductivity is close to 0.03 W m(-1)K(-1), and decreases to 0.02 W m(-1)K(-1)with increasing temperature of the heating microelectrode, which may be due to the increasing lattice vibration and inelastic scattering between phonons. Its effective thermal conductivity is smaller than that of air, indicating that the synthetic method is an effective way to fabricate thermal insulating polymer nanotubes by significantly lowering the effective thermal conductivity. Hence, the method offers a new strategy in the fields of thermal insulation and protection.
机译:由于纳米尺寸效应,一维纳米材料广泛应用于能量转换和储存领域,因为纳米尺寸效应。在此,我们基于使用不混溶的引发剂纳米辊的阳离子聚合来合成竹状聚合物纳米管,其导致中空结构。制造悬浮的微电极以测量单个聚合物纳米管的轴向导热率,这表明该中空结构可以降低其有效的导热率。实验结果表明,其有效的导热率接近0.03W m(-1)k(-1),并且随着加热微电极的温度的增加而降至0.02 w m(-1)k(-1),这可能由于晶格振动和声子之间的无弹性散射增加。其有效的导热率小于空气,表明合成方法是通过显着降低有效导热率来制造热绝缘聚合物纳米管的有效方法。因此,该方法在保温和保护领域提供了一种新的策略。

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