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Activated Carbon Fibers Thickly Overgrown by Ag Nanohair Through Self-Assembly and Rapid Thermal Annealing

机译:Ag Nanohair通过自组装和快速热退火过度长大了活性碳纤维

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摘要

Anisotropic nanomaterial-modified carbon fibers attract increasing attention because of their superior properties over traditional ones. In this study, activated carbon fibers (ACFs) “thickly overgrown” by Ag nanohair were prepared through self-assembly and rapid thermal annealing. Viscose fibers with well-dispersed silver nanoparticles (AgNPs) on surfaces were first prepared through self-assembly of hyperbranched poly(amino-amine) (HBPAA)-capped AgNPs on viscose surfaces. HBPAA endowed the AgNP surfaces with negative charges and abundant amino groups, allowing AgNPs to monodispersively self-assemble to fiber surfaces. Ag nanohair-grown ACFs were prepared by sequential pre-oxidation and carbonization. Because the carbonization furnace was open-ended, ACFs are immediately transferrable to the outside of the furnace. Therefore, the Ag liquid adsorbed by ACF pores squeezed out to form Ag nanowires through thermal contraction. FESEM characterization indicated that Ag nanohairs stood on ACF surface and grew from ACF caps. XPS and XRD characterization showed that Ag successfully assembled to fiber surfaces and retained its metallic state even after high-temperature carbonization. TG analysis suggested that Ag nanohair-grown ACFs maintained their excellent thermal stabilities. Finally, the fabricated ACFs showed excellent and durable antibacterial activities, and the developed method may provide a potential strategy for preparing metal nanowire-grown ACFs.
机译:各向异性纳米材料改性的碳纤维由于其优于传统碳纤维的优越性能而受到越来越多的关注。在这项研究中,通过自组装和快速热退火制备了Ag纳米毛“过度生长”的活性炭纤维(ACF)。首先通过在粘胶表面自组装超支化聚(氨基胺)(HBPAA)封端的AgNPs制备表面具有分散良好的银纳米颗粒(AgNPs)的粘胶纤维。 HBPAA赋予AgNP表面带负电荷和丰富的氨基,使AgNPs可以单分散地自组装到纤维表面。通过连续的预氧化和碳化来制备Ag纳米毛生长的ACF。由于碳化炉是开放式的,因此ACF可以立即转移到炉外。因此,被ACF孔吸附的Ag液体通过热收缩被挤出以形成Ag纳米线。 FESEM表征表明,Ag纳米毛位于ACF表面并从ACF帽中生长。 XPS和XRD表征表明,即使在高温碳化后,Ag也能成功地组装到纤维表面并保持其金属态。 TG分析表明,Ag纳米毛生长的ACF保持了出色的热稳定性。最后,所制备的ACF显示出优异且持久的抗菌活性,并且所开发的方法可以提供制备金属纳米线生长的ACF的潜在策略。

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