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Photothermal Polymer Nanocomposites of Tungsten Bronze Nanorods with Enhanced Tensile Elongation at Low Filler Contents

机译:低填料含量增强拉伸伸长率的钨青铜纳米孔的光热聚合物纳米复合材料

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摘要

We present polymer nanocomposites of tungsten bronze nanorods (TBNRs) and ethylene propylene diene monomers (EPDM). The combination of these components allows the simultaneous enhancement in the mechanical and photothermal properties of the composites at low filler contents. The as-synthesized TBNRs had lengths and diameters of 14.0 ± 2.4 nm and 2.5 ± 0.5 nm, respectively, and were capped with oleylamine, which has a chemical structure similar to EPDM, making the TBNRs compatible with the bulk EPDM matrix. The TBNRs absorb a wide range of near-infrared light because of the sub-band transitions induced by alkali metal doping. Thus, the nanocomposites of TBNRs in EPDM showed enhanced photothermal properties owing to the light absorption and subsequent heat emission by the TBNRs. Noticeably, the nanocomposite with only 3 wt% TBNRs presented significantly enhanced tensile strain at break, in comparison with those of pristine EPDM, nanocomposites with 1 and 2 wt % TBNRs, and those with tungsten bronze nanoparticles, because of the alignment of the nanorods during tensile elongation. The photothermal and mechanical properties of these nanocomposites make them promising materials for various applications such as in fibers, foams, clothes with cold weather resistance, patches or mask-like films for efficient transdermal delivery upon heat generation, and photoresponsive surfaces for droplet transport by the thermocapillary effect in microfluidic devices and microengines.
机译:我们呈现钨青铜纳米棒(TBNR)和乙烯丙烯二烯单体(EPDM)的聚合物纳米复合材料。这些组分的组合允许在低填料含量下同时增强复合材料的机械和光热性质。优选的TBNR分别具有14.0±2.4nm和2.5±0.5nm的长度和直径,并用oleylamine封装,其具有与EPDM类似的化学结构,使TBNR与散装EPDM矩阵相容。由于碱金属掺杂,TBNRS吸收各种近红外光。因此,由于TBNRS的光吸收和随后的热发射,EPDM中TBNR的纳米复合材料显示出增强的光热性能。明显的是,与原始EPDM,纳米复合材料的纳米复合物的纳米复合物,具有1和2wt%TBNR的纳米复合材料,具有显着增强的拉伸菌株,纳米复合材料在突破中呈现显着增强的拉伸菌株,以及用钨青铜纳米颗粒的纳米复合物的纳米复合物。拉伸伸长。这些纳米复合材料的光热和机械性能使其具有诸如纤维,泡沫,具有寒冷的耐候性,贴片或掩模样薄膜的各种应用的有希望的材料,用于在发热时有效透皮递送,以及由液滴输送的光散曲面微流体装置和微能的热量施用。

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