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In situ Polymerization of Polyaniline in Wood Veneers

机译:木材单板中聚苯胺的原位聚合。

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The present study describes the possibility to polymerize aniline within wood veneers to obtain a semi-conducting material with solid wood acting as the base template. It was determined that it is possible to synthesize the intrinsically conductive polymer (ICP) polyaniline in situ within the wood structure of Southern yellow pine veneers, combining the strength of the natural wood structure with the conductivity of the impregnated polymer. It was found that polyaniline is uniformly dispersed within the wood structure by light microscopy and FT-IR imaging. A weight percent gain in the range of 3—12 wt % was obtained with a preferential formation in the wood structure and cell wall, rather than in the lumen. The modified wood was found to be less hydrophilic with the addition of phosphate doped polyaniline as observed by equilibrium water swelling studies. While wood itself is insulating, the modified veneers had conductivities of 1 X 10~(-4) to 1 X 10~(-9) S cm~(-1), demonstrating the ability to tune the conductivity and allowing for materials with a wide range of applications, from anti-static to charge-dispersing materials. Furthermore, the modified veneers had lower total and peak heat releases, as determined by cone calorimetry, because of the char properties of the ICP. This is of interest if these materials are to be used in building and furniture applications where flame retardance is of importance.
机译:本研究描述了在木质贴面中聚合苯胺以获得以实木为基础模板的半导体材料的可能性。已经确定,结合天然木结构的强度和浸渍聚合物的电导率,可以在南方黄松单板的木结构内原位合成本征导电聚合物(ICP)聚苯胺。通过光学显微镜和FT-IR成像发现,聚苯胺均匀地分散在木材结构中。获得的重量百分比增加在3-12 wt%的范围内,优先形成在木质结构和孔壁中,而不是内腔中。通过平衡水溶胀研究观察到,添加磷酸盐掺杂的聚苯胺后发现改性木材的亲水性较低。虽然木材本身是绝缘的,但改性单板的电导率为1 X 10〜(-4)至1 X 10〜(-9)S cm〜(-1),这表明可以调节电导率并允许材料具有从抗静电材料到电荷分散材料,用途广泛。此外,由于ICP的炭特性,通过锥量热法测定,改性单板具有较低的总和峰值放热。如果这些材料要用于对阻燃性很重要的建筑和家具应用中,这是令人感兴趣的。

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